dc.creatorRodríguez Escobar, Gilma
dc.creatorBohórquez Fernández, Silvia
dc.creatorPovea de Ruiz, Harlem
dc.creatorMejía Mejía, Omar
dc.creatorPáez Rojas, Paola
dc.creatorSuárez Obando, Fernando
dc.creatorMejía Naranjo, Wilson
dc.creatorMatiz Camacho, Hernando
dc.creatorVeloza, Angélica Lucía
dc.creatorOrtíz Ruíz, Guillermo
dc.creatorLara García, Antonio
dc.creatorGaray Fernández, Manuel
dc.creatorPedraza Morales, Julián
dc.creatorRodríguez Valentín, Paula
dc.creatorVargas Cruz, Sandra Lucía
dc.creatorLadino Meléndez, Liliana
dc.creatorBagés Mesa, María Catalina
dc.creatorBarbosa Díaz, Nicolás
dc.creatorDíaz Muñoz, Gustavo Alfonso
dc.creatorHernández Vela, Sergio
dc.creatorRodríguez E., María Victoria
dc.date.accessioned2020-07-07T21:16:01Z
dc.date.accessioned2023-06-05T14:29:55Z
dc.date.available2020-07-07T21:16:01Z
dc.date.available2023-06-05T14:29:55Z
dc.date.created2020-07-07T21:16:01Z
dc.date.issued2020
dc.identifier9789587391350
dc.identifierhttp://hdl.handle.net/20.500.12495/3359
dc.identifierinstname: Universidad El Bosque
dc.identifierinstname: Universidad El Bosque
dc.identifierreponame: Repositorio Institucional Universidad El Bosque
dc.identifierreponame: Repositorio Institucional Universidad El Bosque
dc.identifierhttps://repositorio.unbosque.edu.co
dc.identifierrepourl: https://repositorio.unbosque.edu.co
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/6638472
dc.description.abstractEste libro presenta saberes y prácticas en alimentación y nutrición aplicadas al ejercicio clínico, al trabajo comunitario y a la salud pública, en diálogo con conceptos y metodologías de las ciencias biomédicas. Está organizado en tres partes: alimentación, nutrición y ciencias básicas; alimentación, nutrición y práctica clínica; y alimentación, nutrición y salud pública. Esta estructura propicia la reflexión y la investigación en torno a las estrategias y acciones conocidas como medicina traslacional.
dc.publisherUniversidad El Bosque
dc.relationWhitney E, Rolfes SR, Crowe T, Smith DC, Walsh A. Understanding Nutrition. 2.a ed. Melbourne: Cengage Learning Australia; 2013.
dc.relationAminoff MJ, et al. Current medical diagnosis & treatment. 54.a ed. USA: McGraw-Hill Education; 2015.
dc.relationGallego B, Díaz J, León R, Matos I. Aforismos, refranes, proverbios y frases en pediatría. Revista Cubana de Pediatría. 2011;83(4):442-48.
dc.relationSánchez ME. Historia de la nutrición. Universidad de San Carlos de Guatemala; 2004.
dc.relationFerrer MG, Moreno-Carranza B. Los grandes apellidos de la biotecnología. Instituto Tecnológico y de Estudios Superiores de Monterrey. Instituto de Neurobiología de la Universidad Autónoma de México; 2010.
dc.relationPérez BS. Aportaciones del Barón Justus von Liebig a la nutrición. Anales de la Real Academia Nacional de Farmacia. 2003;69(4):83-101.
dc.relationMaynard LA, Willbur O. Atwater-A Biographical Sketch (my. 3, 1944-oct. 6, 1907). The Journal of Nutrition. 1962;78(1):1-9.
dc.relationCuervo M, Corbalán M, Baladía E, Cabrerizo L, Formiguera X, Iglesias C, et al. Comparison of dietary reference intakes (DRI) between different countries of the European Union, The United States and the World Health Organization. Nutrición Hospitalaria. 2009 ag. 1;24(4):384-414.
dc.relationHernández M. Recomendaciones nutricionales para el ser humano: actualización. Invest Bioméd. 2004;23(4):266-92.
dc.relationRedondo C, Santamaría A, Mazaira J, Ortiz MR, De Rufino, M. Crecimiento fetal, nutrición de la embarazada y teoría del programming fetal. Boletín de la Sociedad de Pediatría de Asturias, Cantabria, Castilla y León. 2013;53:2-12.
dc.relationCarvajal Á. Manual de nutrición y dietética. España: Departamento de Nutrición. Facultad de Farmacia. Universidad Complutense de Madrid; 2013.
dc.relationCarvajal Á. Ingestas recomendadas de energía y nutrientes. En: García Arias MT, García-Fernández MC, editores. Nutrición y dietética. España: Universidad de León; 2013. p. 1-26.
dc.relationMonterrey PA, Cotes LY. El análisis de la dieta (I): Los fundamentos de las ingestiones dietéticas de referencia. Lecturas sobre Nutrición. 2004;11(4):39-54.
dc.relationTrumbo P, Schlicrker S, Yattes AA, Poods M. Dietary reference intakes for energy, carbohydrate, fiber, fat, fatty acids, cholesterol, protein and amino acids. The American Dietetic Association. 2002;112(11):1621-30.
dc.relationBarr SI, Murphy SP, Poss MI. Interpreting and using the Dietary References Intake in dietary assessment of individuals and groups. COMMENTARY 2002;102(6):780-88.
dc.relationVarela, G, coordinación general. Libro blanco de la nutrición en España. Madrid: Fundación Española de la Nutrición; 2013.
dc.relationPrograma para el mejoramiento de las encuestas y de la medición de condiciones de vida en América Latina y el Caribe. United Nations. Economic Commission for Latin America and the Caribbean. IV taller regional La medición de la pobreza: el método de las líneas de pobreza: Buenos Aires, 16 al 19 de noviembre de 1999. Santiago de Chile: Cepal; 2000.
dc.relationCooper C, Dawson-Hughes B, Gordon CM, Rizzoli R. Alimentación sana, huesos sanos. International Osteoporosis Foundation; 2015.
dc.relationMinisterio de la Protección Social. Guías alimentarias para la población colombiana. Alimentación saludable para todos. Ministerio de la Protección Social-Instituto Colombiano de Bienestar Social; 2011.
dc.relationOtten JJ, Pitzi J, Meyers LD, editores. Dietary reference intakes: the essential guide to nutrient requirements. Washington, D.C.: National Academies Press; 2006.
dc.relationOrganización Mundial de la Salud. Nota informativa sobre la ingesta de azúcares recomendada en la directriz de la OMS para adultos y niños; 2015. p. 1-6.
dc.relationDíaz E. Principios y aplicación de las nuevas necesidades de energía según el Comité de Expertos FAO/OMS 2004. Chile: Cepal; 2007.
dc.relationServin MC. Nutrición básica y aplicada. 2.a ed. México: Universidad Nacional Autónoma de México; 2013.
dc.relationOrganización de las Naciones Unidas para la Alimentación y la Agricultura, Fondo Internacional de Desarrollo Agrícola, Programa Mundial de Alimentos. El estado de la inseguridad alimentaria en el mundo. Roma: FAO; 2015.
dc.relationVarga ZM, Lancheros PL, Barrera PM. Gasto energético en reposo y composición corporal en adultos. Revista Facultad de Medicina. 2011;59(1):43-58.
dc.relationChiquete E, Tolosa P. Conceptos tradicionales y emergentes sobre el balance energético. Revista de Endocrinología y Nutrición. 2013;21(2):59-68.
dc.relationZeballos L. Gasto y consumo energético. Revista de Actualización Clínica 2014;41:2176-79.
dc.relationAbdel-lah Mohamed A, Álvarez J. Soporte nutricional en el paciente quirúrgico. Barcelona: Glosa; 2009.
dc.relationHernández M, et al. Temas de nutrición. Dietoterapia. La Habana: Ciencias Médicas; 2008.
dc.relationMartínez JA, Portillo MP. Energía. En: Agencia Española de Seguridad Alimentaria y Nutrición (AESAN), editores. El libro blanco de la nutrición en España. España: AESAN; 2013.
dc.relationRodríguez G. Principios básicos de alimentación y nutrición aplicada. 2.ª ed. Colombia: Kimprés Ltda.; 2008.
dc.relationRincón D, Komarony C. Evaluación de seis fórmulas usadas para el cálculo de la superficie corporal. Revista de la Facultad de Medicina de la Universidad Nacional de Colombia. 2004;52(2):115-20.
dc.relationHoyos de Takahashi C. Principios básicos para determinar las necesidades de nutrientes. En: Nutrición enteral y parenteral. México: McGraw-Hill Interamericana; 2012. p. 45-57.
dc.relationMinisterio de Salud y de la Protección Social. Resolución 3803 de 2016 por la cual se establecen las recomendaciones de ingesta de energía y nutrientes para la población colombiana y se dictan otras disposiciones; 2015. Disponible en https://www.minsalud.gov.co/Normatividad_Nuevo/Resoluci%C3%B3n%203803%20de%202016.pdf
dc.relationMataux VJ. Tratado de nutrición y alimentación. 3.a ed. Madrid: Ergón; 2011.
dc.relationSerralda A, Meléndez G, Pasquelli A. Requerimientos y recomendaciones proteicas, referencias internacionales y mexicanas. Revista de Endocrinología y Nutrición. 2003;11(2):73-9.
dc.relationTome D. Does the nitrogen balance cover the various components of human protein needs? 2011. Disponible en: http://www.idfdairynutrition.org/Files/media/FactSheetsHP/Nitrogen-Balance-Choledoc-121-110209.pdf, 2015.
dc.relationMartinuzzi A, Alcántara S, Amin ME, Guillot A, Palaoro A, Ferraresi E, Feller C, Santana S. Nitrógeno ureico urinario como indicador del metabolismo proteico en el paciente crítico. Revista Cubana de Alimentación y Nutrición. 2011;21(2):224-35.
dc.relationJoint F. Protein and amino acid requirements in human nutrition. Geneva: World Health Organization; 2007.
dc.relationSuárez MM, Kizlansky A, López LB. Evaluación de la calidad de las proteínas en los alimentos calculando el escore de aminoácidos corregido por digestibilidad. Nutrición Hospitalaria. 2006;21(1):47-51.
dc.relationFundación Española de la Nutrición. Fundación Iberoamericana de Nutrición. La leche como vehículo de salud para la población. España; 2012.
dc.relationHathcock J, Griffiths J. Vitamin and mineral safety. 3.a ed. Douglas MacKay, N.D. Andrea Wong, Ph.D. Haiuyen Nguyenm, editores; 2014.
dc.relationLatham MC. Nutrición humana en el mundo en desarrollo. Roma: FAO; 2002.
dc.relationPeacock M. Calcium metabolism in health and disease. Clinical Journal of American Society of Nephrology. 2010;5(S):23-30.
dc.relationFarré R. La leche y los productos lácteos: fuentes dietéticas de calcio. Nutrición Hospitalaria. 2015;31(supl. 2):1-9.
dc.relationOrtega R, Jiménez A, López-Sobaler A. El calcio y la salud. Nutrición Hospitalaria. 2015;31 (supl. 2):10-17.
dc.relationScientific Committee on Food Scientific Panel on Dietetic Products, Nutrition and Allergies. Tolerable upper intake levels for vitamins and minerals. European Food Safety Authority; 2006. p. 151-66.
dc.relationMartínez EB, García CA, Castro-Juárez JC, Coronel García R, Duque H, Ordaz-Zurita F, Ramírez-García SA. Recomendaciones nutricionales durante la etapa adulta para hombres y mujeres en edad reproductiva. Revista Médica MD. 2014:6(1):42-9.
dc.relationInstituto Colombiano de Bienestar Familiar. Recomendaciones de consumo diario de calorías y nutrientes para la población colombiana. Instituto Colombiano de Bienestar Familiar; 1992.
dc.relationInstituto Colombiano de Bienestar Familiar - Organización de las Naciones Unidas para la Alimentación y Agricultura. Guías alimentarias para la población colombiana mayor de dos años. Documento técnico. Bogotá, Colombia; 2015. p. 1-313.
dc.relationMckee T. Bioquímica. La base molecular de la vida. 3.ª ed. España: McGraw-Hill; 2003.
dc.relationAviram M, Rosenblat M, Bisgaier CL, Newton RS, Prino-Parmo SL, La Du BN. Paraoxonase inhibits high-density lipoprotein oxidation and preserves its functions. A possible peroxidative role for paraoxonasa. J Clin Invest. 1998;101:1581-90.
dc.relationStampfer MJ, Hennekens CH, Manson JE, Graham A, et al. Vitamin E consumption and the risk of coronary disease in women. N Engl J Med. 1993;328(20):1444-9.
dc.relationYoung Vernon R. Trace element biology: The knowledge base and its application for the nutrition of individuals and populations. American Society for Nutritional Sciences. 2003;22:1581S-7S.
dc.relationDevlin, TM. Bioquímica. Libro de texto con aplicaciones clínicas. 4.ª ed. Barcelona: Reverté; 2004.
dc.relationLehninger A. Principios de bioquímica. 2.ª ed. Omega; 1993.
dc.relationMathews, C. Bioquímica. 3.ª ed. Madrid: Pearson Education; 2002.
dc.relationHarrison. Principios de medicina interna. 16.ª ed. Vol. 1. Editorial Interamericana; 2006.
dc.relationMurray, R. Harper’s Illustrated Biochemistry. 26.ª ed. Nueva York: Lange Medical Books - McGraw-Hill; 2003.
dc.relationVoet D, Voet J. Bioquímica. 3.ª ed. Buenos Aires: Editorial Médica Panamericana; 2006.
dc.relationStryer L, Berg J, Tymoczko J. Biochemistry. 5.ª ed. Nueva York: W. H. Freeman and Company; 2002.
dc.relationZavala A, et al. Manual de nutrición y diabetes. Colección Manuales. Fundación Alberto J. Roemmers. Buenos Aires: La Prensa Médica Argentina; 1999.
dc.relationRodríguez JR, González MJ. Una revisión de la teoría de los radicales libres. ¿Pueden ayudar los agentes antioxidantes? Boletín Científico del Sur (Science). 1987;14:69-70.
dc.relationMetabolismo lipídico y aterosclerosis. Documentación Científica para la Clínica y el Consultorio. Bogotá: Laboratorios Pharma; 1990.
dc.relationGeorg van House. Preventive cardiology. Berlín: Boehringer Mannheim GmbH; 1990.
dc.relationMozaffarian D, Katan M, Ascherio A, Stampfer M, Willett W. Trans fatty acids and cardiovascular disease. N Engl J Med. 2006;354:1601-13.
dc.relationBaynes J, Dominizczak M. Bioquímica médica. 2.ª ed. Elsevier; 2006.
dc.relationAuwerx J, Staels B. Leptin. The Lancet. 1998;351:737-42.
dc.relationSteinberg D, Parthasarathy S, Carew TE, et al. Beyond cholesterol: modification of low-density lipoprotein that increase its atherogenicity. N Engl J Med. 1989;320(14):915-24.
dc.relationSuperko HR, Bortz W, Williams PT, Albers JJ, Wood PD. Caffeinated and decaffeinated coffee effects on plasma lipoprotein cholesterol, apolipoproteins, and lipase activity: a controlled, randomized trial. Am J Clin Nutr. 1991;54:599-605.
dc.relationTartaglia LA. The leptin receptor. J Biol Chem. 1997;272:6093-6.
dc.relationHedrick CC, Thorpe SR, Fu MX, Harper CM, Yoo J, Kim SM, et al. Glycation impairs high-density lipoprotein function. Diabetología. 2000;43:312-20.
dc.relationParthasarathy S, Barnett J, Fong LG. High-density lipoprotein inhibits the oxidative modification of low-density lipoprotein. Biochem Biophys Acta. 1990;1044(2):275-83.
dc.relationBast Aalt, Haenen G, Doelman C. Oxidants and antioxidants: state of the art. The American Journal of Medicine. 1991; 91(supl. 3C).
dc.relationGoldstein JL, Brown MS. Regulation of the mevalonate pathway. Nature. 1990;343:425-30.
dc.relationMehra M, Lavie CJ, Ventura H. Prevention of atherosclerosis. The potential role of antioxidants. Postgraduate Medicine. Antioxidants. 1995 jul.;98(1).
dc.relationDiplock AT. Prevention of diseases with antioxidants nutrients. Am J Clin Nutr. 1991;53:9S-18S.
dc.relationNeedleman P, Isakson P. Selective inhibition of cyclooxygenase 2. Science and Medicine. 1998 en.-febr.:611-54.2.
dc.relationRimm EB, Stampfer MJ, Ascherio A, et al. Vitamin E consumption and the risk of coronary heart disease in men. Engl J Med. 1993;328(20):1450-6.
dc.relationRoss R. The pathogenesis of atherosclerosis an uptake. Engl J Med. 1986;314:488-500.
dc.relationSmud R, Sermukslis B. Metabolismo normal de las lipoproteínas. Avances en dislipidemias. México. Parke-Davis; 2002.
dc.relationScriver CR, Sly W. The metabolic & molecular bases of inherited diseases. 8.a ed. Nueva York: McGraw-Hill; 2001.
dc.relationLedley FD, Woo SL. Molecular analysis of the inheritance of phenylcetonuria and mild hyperphenylalaninemia in families with both disorders. N Engl J Med. 1986;314:1276-89.
dc.relationWasler M. Urea cycle disorders and other hereditary hyperammonemic syndromes. En: Stanbury JB, Fredrickson DS, et al. (eds.). Metabolic basis of inherited disease. Nueva York: McGraw-Hill Book Co; 1983.
dc.relationHarris RA, Joshi M, Jeoung NH, Obayashi M. Overview of the molecular and biochemical basis of branched-chain amino acid catabolism. The Journal of Nutrition. 2005; 135 (6 supl.): 1527S-30S.
dc.relationLarqué E, Ruiz-Palacios M, Koletzbo B. Placental regulation of fetal nutrient supply. Curro Pin Clin Nutr Metab Care. 2013;16:292-7.
dc.relationLadino L, Moreno-Torres R, Campos D, Baltazar MC, Campoy C and the PREOBE Research Group. Association between women’s nutrition during pregnancy and body composition of the offspring until 18 months. Journal of Pediatric Gastroenterology and Nutrition. 2014;58,S1:490.
dc.relationKoletzo B, Bauer CP, Bung P, Cremer M, Flothkôtter M, Hellmers C, et al. Nutrition in pregnancy-practice recommendations of the Network “Healthy Start-Young Family Network”. Dtsch Med Wochenschr. 2012; 137: 1366-72.
dc.relationBlumfield ML, Hure AJ, MacDonald-Wicks LK, Smith R, Simpson SJ, Giles WB, et al. Dietary balance during pregnancy is associated with fetal adiposity and fat distribution. Am J Clin Nutr. 2012; 96: 1034-41.
dc.relationKazzi GM, Gross CL, Bork MD, Moses D. Vitamins and minerals. In: Gleicher N, Buttin L, editores. Principles of medical therapy in pregnancy. 3.a ed. Old Tappan, NJ: Appleton and Lange; 1998. p. 311-9.
dc.relationScholl T, et al. Use of multivitamin / mineral prenatal supplements: Influence on the outcome of pregnancy. Am J. Epidemiol. 1997;146:134-41.
dc.relationPhillips D, Anthony RV, Simonetta G, Owens JA. Restriction of fetal growth has a differential impact on fetal prolactin and prolactin receptor mRNA expression. Journal of Neuroendocrinology. 2001 febr.;13:175.
dc.relationBell EF, Acarregui MJ. Restricted versus liberal water intake for preventing morbidity and mortality in preterm infants. Cochrane Database Syst Rev 2001;CD000503.
dc.relationVan Assche F, Aert L, De Prins F. A morphologic study of the endocrine pancreas in human pregnancy. Br J Obstet Gynaecol. 1988;85:818.
dc.relationBoden G. Fuel metabolism in pregnancy and in gestational diabetes mellitus. Obstet Gynecol Clin North Am. 1996;23:1.
dc.relationFelig P, Lynch V. Starvation in human pregnancy: hypoglycaemia, hipoinsulinemia, and hyperketonemia. Science. 1980;170:990.
dc.relationTyson J, Austin K, Farinholt J, et al. Endocrine-metabolic response to acute starvation in human gestation. Am J Obstet Gynecol. 1976;125:1073.
dc.relationMarks K-A, Reichman B, Lusky A. Fetal growth and postnatal growth failure in very- low-brithweight infants. Acta Paediatrica. 2006 febr.;95(2):236-42.
dc.relationConlisk A, Huiman X, Martorell R, Grajeda R, Aryeh D. Maternal and child nutritional supplementation are inversely associated with fasting plasma glucose concentration in young Guatemalan adults. Conmunity and International Nutrition; 2006.
dc.relationCatalano P, Tyzbir E, Roman N, et al. Longitudinal changes in insulin release and insulin resistence in obese pregnant woman. Am J Obstet Gynecol. 1991;165:1667.
dc.relationNestel P, Davidson F. Introduction. The American Journal of Clinical Nutrition. Am, J. Clinical Nutrition. 2000 jul. 1;209S-211.
dc.relationKuhl C. Etiology and pathogenesis of gestational diabetes. Diabetes Care. 1998;21:19B.
dc.relationYajnik CS, Coyaji KJ, Joglekar CV, Kellingray S, Fall CHD. Paternal insulin resistance and fetal growth: problem for the “fetal insulin and the fetal origins” hypotheses. Journal of Diabetology. 2001;345:1378-89.
dc.relationBell G, Burant C, Takeda J, et al. Structure and function of mammalian facilitative sugar transporters. J Biol Chem. 1993;268:19161.
dc.relationCordero L, Landon M. Infant of the diabetic mother. Clin Perinatal. 1993;20:635.
dc.relationYajnik CS, Deshpande SS, Panchanadikar AV, Naik SS, Coyaji KJ, Fall CHD. Maternal total homocysteine concentration and neonatal size in India. Asia Pacific Journal of Clinical Nutrition. 2005;14:179-81.
dc.relationDivision of Nutrition and Physical Activity, National Center for Chronic Disease. Prevention and Health Promotion. BMI_Body Mass Index: BMI Calculator; 2004.
dc.relationSimpson Sj, Raubwnheimer D. Obesity: The protein leverage hypothesis. Obes Rev. 2005;6:133-42.
dc.relationSalameh W, Mastrogiannis D. Maternal hiperlipidemia in pregnancy. Clin Obstet Gynecol. 1994;37:66.
dc.relationHauner H, Brunnerr S, Amann-Gasssner, U. The role of dietary fatty acids for early human adipose tissue growth. Am J Clin Nutr. 2013;98:5495-555.
dc.relationVan der Maten G, et al. Low-sodium diet in pregnancy: effects on blood pressure and maternal nutritional status. Br J Nutr. 1997;77:703-20.
dc.relationSchobel H. Pregnancy-induced alterations in renal function. Kidney Blood Press Res. 1998;21:276.
dc.relationMiyamoto S, Shimokawa H, Sumioki H, et al. Circadian rhythm of plasma atrial natriuretic peptide, aldostrone, and blood pressure during the third trimester in normal and preeclamptic pregnancies. Am J obstet Gynecol. 1998;158:393.
dc.relationBarker DJP. Fetal nutrition and cardiovascular disease in later life. Br Med Bull. 1997;13:807-13.
dc.relationKanade AN, Rao S, Yajnik CS, Margetts BM, Fall CHD. Rapid assessment of maternal activity among rural Indian mothers; the Pune Maternal Nutrition Study. Public Health Nutrition. 2005;8:588-95.
dc.relationGonzález H, Malpeli A, Mansur J, Etchegoyen G. Changes in body composition in lactating adolescent mothers. Archivos Latinoamericanos de Nutrición. 2005;55(3).
dc.relationYip R. Significance of an abnormally low or high haemoglobin concentration during pregnancy: special consideration of iron nutrition. Am J Clin Nutr. 2000;72(supl.):272S-9S.
dc.relationFall CHD, Yajnik CS, Rao A. Farrant JW. Micronutrients and fetal growth. Journal of Nutrition. 2003 my. 1;133(5):1747S-1756.
dc.relationInternational Nutritional Anaemia Consultative Group Symposium. 12 March 1999, Durban, South Africa. Washigton DC: ILSI Press; 2000.
dc.relationGoldenberg R, et al. Plasma ferritin and pregnancy outcome. Am J Obstet Gynecol. 1996;175:1356-9. 36. Scholl T, et al. Use of multivitamin / mineral prenatal supplements: Influence on the outcome of pregnancy. Am J Epidemiol. 1997;146:134-41.
dc.relationBothwell TH. Iron requirements in pregnancy and strategies to meet them. Am J Clin Nutr. 2000;72(supl.):257S-64S.
dc.relationNational Academy of Sciences, Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes- 997-2001-September; 2002.
dc.relationUnicef. State of the world’s children. Oxford: Oxford University Press; 1998.
dc.relationLonnerdal B. Iron- Zinc- copper interactions. In: Micronutrients interactions: impacts on child health and nutrition. Washington DC: ILSI Press; 1996:3-10.
dc.relationMakita D, Ash DM, Tatala SR, Latham MC. A Micronutrient- fortified beverage prevents iron deficiency, reduces anemia and improves the hemoglobin concentration of pregnant Tanzanian women. Journal of Nutrition. 2003 my.1;133(5):1339-46.
dc.relationGodfrey KM. Maternal regulation of fetal development and health in adult life. Eur J Obstet Gynaecol Reprod Biol. 1998;78:141-50.
dc.relationHallberg L. Does calcium interfere with iron absorption? Am J Clin Nutr. 1998;68:3-4.
dc.relationHojo M, August P. Calcium metabolism in normal and hypertensive pregnancy. Semin Nephrol. 1995;15:504.
dc.relationGanpule A, Yajnik CS, Rao A, Fisher DJ, Kanade A, Cooper C, Naik S, Joshi N. Bone mass in Indian children - relationships to maternal nutritional status and diet during pregnancy: The Pune Maternal Nutrition Study. J Clin Endocrinol Metab. 2006;91:2294-3001.
dc.relationKovacs C, Kronenberg H. Maternal-fetal calcium and bone metabolism during pregnancy, puerperium, and lactation. Endocr Rev. 1997;18:832.
dc.relationHokuto I, Ikeda K, Tokieda K, Mori K, Sueoka K. An ultra-premature baby of 290 g birth weight needed more than 500 mg 7 kg of calcium and phosphorus daily. Eur J Pediatr. 2001;160:517-22.
dc.relationEl Sonbaty MR, Abdul-Ghaffar NU. Vitamin D deficiency in veiled Kuwauti womwn. Eur J Clin Nutr. 1996,50:315-8.
dc.relationFrolich A, Rudricki M, Fischer-Rasmassen W, Olfsson K. Serum concentration of intact parathyroid hormone during late human pregnancy: a longitudinal study. Eur J Obstet Gynecol Reprod Biol. 1991;42:85-7.
dc.relationShahtaheri S, Aaron J, Jhonson D, et al. Changes in trabecular bone architecture in women during pregnancy. Br J Obstet Gynaecol. 1999;106:432.
dc.relationRwpke JT. Calcium, magnesium and zinc supplementation and perinatal outcome. Clin Obstet Gynecol. 1991;34:262-7.
dc.relationGlinoer D. The regulation of thyroid function in pregnancy: pathways of endocrine adaptation from physiology to pathology. Endocr Rev. 1997;18:404.
dc.relationBurrow G, Fisher D, Larsen P. Maternal and fetal thyroid function. N Engl J Med. 1994;331:1072.
dc.relationXue-Yi C, Xin-Min J, Zhi-Hong D, et al. Timing of vulnerability of the brain to iodine deficiency in endemic cretinism. Engl J Med. 1994;331:1739.
dc.relationUtiger R. Maternal hypothyroidism and fetal development. Engl J Med. 1999;341:601.
dc.relationScholl TO, Hediger ML, Schall JI, Mead JP, Fischer R. Reduced micronutrient levels in the cord blood of growing teenage gravida. JAMA. 1995;274:26-7.
dc.relationKuzma-O´Reilly B, Duenas ML, Greecher C, et al. Evaluation, development, and implementation of potentially better practices in neonatal intensive care nutrition. Pediatrics. 2003;111:461-70.
dc.relationBarker DJ. Maternal nutrition, fetal nutrition and disease in later life. Nutrition. 1997;13:807-13.
dc.relationMaine D. Role of nutrition in the prevention of toxaemia. Am J Clin Nutr. 2000;72(supl.)298S-300S.
dc.relationKohrle J. The trace element selenium and the thyroid gland. Biochimie. 1999;81:527-33.
dc.relationRamakrishnan U, Manjrekar R, Rivera J, González-Cossio T, Martorell R. Micronutrients and pregnancy outcome: a review of the literature. Nutr Res. 1999;19:103-59.
dc.relationYoshida SH, Keen Clk, Ansari AA, Gershwin ME. Nutrition and the immune system. In: Shils Me, Olsom JA, Shike M, Ross AC, editores. Modern nutrition in health and disease. 9.a ed. Baltimore: Williamns and Williamns; 1999. p. 725-50.
dc.relationHaikii M, Dibbley MJ, Suryono A, et al. Impact of vitamin A and zinc supplements on maternal post-partum infections in rural central Java, Indonesia. Report of the XIX International Vitamin A Consultative Group Meeting. Durban, South Africa, 8-11 mzo. 1999. Washigton, DC: ILSI Press; 1999. p. 34.
dc.relationHytten FE. Nutritional physiology during pregnancy. In: Campbell DM, Gillmer DG, editores. Nutrition in pregnancy. London: Royal College of Gyneacologists; 1983. p. 1-18.
dc.relationClark RH, Thomas P, Peabody J. Extrauterine growth restriction remains a serious problem in prematurely born neonates. Pediatrics. 2003;111:986-90.
dc.relationFAO/WHO/ONU: Expert consultation. Food and Nutrition Technical Report Series N.º 1. Roma, oct. 2001.
dc.relationScholl TO, Hediger ML, Ances IG. Maternal growth during pregnancy and decreased infant birth weight. Am J Clin Nutr. 1990;51:790-93.
dc.relationOladapo A Ladipo. Nutrition in pregnancy: mineral and vitamin supplements. American Journal of Clinical Nutrition. 2000 jul.; 72 (1), 280S-290S.
dc.relationButte NF, Hopkinson JM, Mehta N, Moon JK, O´Brian Smith E. Adjustments in energy expenditure and substrate utilization during late pregnancy and lactation. Am J Clin Nutr. 1999; 69: 299-307.
dc.relationBaker K, Thind IS, Frank O, et al. Vitamin levels in low birthweight new-born infants and their mothers. Am J Obstet Gynecol. 1997;129:521-24.
dc.relationBernal J, Suárez F. La era genómica y proteómica de la medicina. Universitas Médica. 2007;48(2):104-17.
dc.relationKeusch GT. What do -omics mean for the science and policy of the nutritional sciences? The American Journal of Clinical Nutrition. 2006;83(2):522S.
dc.relationTopol EJ. Individualized medicine from prewomb to tomb. Cell. 2014;157(1):241-53.
dc.relationStranger BE, Dermitzakis ET. From DNA to RNA to disease and back: the ‘central dogma’ of regulatory disease variation. Human Genomics. 2006;2(6):383.
dc.relationOetting WS, Robinson PN, Greenblatt MS, Cotton RG, Beck T, Carey JC, et al. Getting ready for the Human Phenome Project: The 2012 forum of the Human Variome Project. Human Mutation. 2013 abr.;34(4):661-6.
dc.relationLander ES, Linton LM, Birren B, Nusbaum C, Zody MC, Baldwin J, Funke R. Initial sequencing and analysis of the human genome. Nature. 2001;409(6822):860-921.
dc.relationKim MS, Pinto SM, Getnet D, Nirujogi RS, Manda SS, Chaerkady R, Thomas JK. A draft map of the human proteome. Nature. 2014;509(7502):575-81.
dc.relationKeating ST, El-Osta A. Epigenetics and metabolism. Circulation Research. 2015;116(4):715-36.
dc.relationVenter JC, Adams MD, Myers EW, Li PW, Mural RJ, Sutton GG, et al. The sequence of the human genome. Science. 2001;291(5507):1304-51.
dc.relationEzkurdia JD, Rodríguez JM, Frankish A, Diekhans M, Harrow J, et al. Multiple evidence strands suggest that there may be as few as 19 000 human protein-coding genes. Human Molecular Genetics. 2014;23(22):5866-78.
dc.relationWild CP. Complementing the genome with an “exposome”: the outstanding challenge of environmental exposure measurement in molecular epidemiology. Cancer Epidemiology Biomarkers & Prevention. 2005;14(8):1847-50.
dc.relationTammen SA, Friso S, Choi SW. Epigenetics: the link between nature and nurture. Molecular Aspects of Medicine. 2013;34(4):753-64.
dc.relationYavartanoo M, Choi JK. ENCODE: a sourcebook of epigenomes and chromatin language. Genomics & informatics 2013;11(1):2-6.
dc.relationLardenoije R, Iatrou A, Kenis G, Kompotis K, Steinbusch HW, Mastroeni D, Rutten BP, et al. The epigenetics of aging and neurodegeneration. Progress in Neurobiology. 2015;131:21-64.
dc.relationWu PY, Chandramohan R, Phan JH, Mahle WT, Gaynor JW, Maher KO, Wang MD. Cardiovascular transcriptomics and epigenomics using next-generation sequencing. Circulation: Cardiovascular Genetics. 2014;7(5):701-10.
dc.relationSales NMR, Pelegrini PB, Goersch MC. Nutrigenomics: definitions and advances of this new science. Journal of Nutrition and Metabolism. 2014:1-6.
dc.relationSimopoulos AP. Nutrigenetics/nutrigenomics. Annual Review of Public Health. 2010;31:53-68.
dc.relationVerduci E, Banderali G, Barberi S, Radaelli G, Lops A, Betti F, Giovannini M, et al. Epigenetic effects of human breast milk. Nutrients. 2014;6(4):1711-24.
dc.relationVelez AMA, Howard MS. Tumor-suppressor genes, cell cycle regulatory checkpoints, and the skin. North American Journal of Medical Sciences. 2015;7(5):176.
dc.relationEsper DH, Harb WA. The cancer cachexia syndrome: a review of metabolic and clinical manifestations. Nutrition in Clinical Practice. 2005;20(4):369-76.
dc.relationHui D, Dos Santos R, Chisholm G, Bansal S, Souza Crovador C, Bruera E. Bedside clinical signs associated with impending death in patients with advanced cancer: Preliminary findings of a prospective, longitudinal cohort study. Cancer. 2015;12(6):960-7.
dc.relationNicholson JM, Cimini D. How mitotic errors contribute to karyotypic diversity in cancer. Advances in Cancer Research. 2011;112:43.
dc.relationKanwal R, Gupta S. Epigenetic modifications in cancer. Clinical Genetics. 2012;81(4):303-11.
dc.relationKanwal R, Gupta K, Gupta S. Cancer epigenetics: an introduction. Cancer epigenetics: risk assessment, diagnosis, treatment, and prognosis. In: Verma M, editor. Cancer Epigenetics. Nueva York, NY: Springer Nueva York; 2015. p. 3-25.
dc.relationSupic G, Jagodic M, Magic Z. Epigenetics: a new link between nutrition and cancer. Nutrition and Cancer. 2013;65(6):781-92.
dc.relationBishop KS, Ferguson LR. The interaction between epigenetics, nutrition and the development of cancer. Nutrients. 2015;7(2):922-47.
dc.relationFang MZ, Chen D, Sun Y, Jin Z, Christman JK, Yang CS. Reversal of hypermethylation and reactivation of p16INK4a, RARβ, and MGMT genes by genistein and other isoflavones from soy. Clinical Cancer Research. 2005;11(19):7033-41.
dc.relationBarrera LN, Cassidy A, Johnson IT, Bao Y, Belshaw, NJ. Epigenetic and antioxidant effects of dietary isothiocyanates and selenium: potential implications for cancer chemoprevention. Proceedings of the Nutrition Society. 2012;71(02):237-45.
dc.relationMigheli F, Migliore L. Epigenetics of colorectal cancer. Clinical Genetics. 2012;81(4):312-8.
dc.relationNystrom M, Mutanen, M. Diet and epigenetics in colon cancer. World J Gastroenterol. 2009;15(3):257-63.
dc.relationOlivo-Marston SE, Hursting SD, Perkins SN, Schetter A, Khan M, Croce C, Lavigne J, et al. Effects of calorie restriction and diet-induced obesity on murine colon carcinogenesis, growth and inflammatory factors, and microRNA expression. PLoS One. 2014;9(4):e94765.
dc.relationChajès V, Thiébaut AC, Rotival M, Gauthier E, Maillard V, Boutron-Ruault MC, Clavel-Chapelon F, et al. Association between serum trans-monounsaturated fatty acids and breast cancer risk in the E3N-EPIC Study. American Journal of Epidemiology. 2008;16(11):1312-20.
dc.relationRomagnolo DF, Papoutsis AJ, Selmin O. Nutritional targeting of cyclooxygenase-2 for colon cancer prevention. Inflammation Allergy-Drug Targets. 2010;9(3):181-91.
dc.relationQin W, Zhang K, Clarke K, Weiland T, Sauter ER. Methylation and miRNA effects of resveratrol on mammary tumors vs. normal tissue. Nutrition and Cancer 2014;66(2):270-7.
dc.relationEilati E, Bahr JM, Hales DB. Long term consumption of flaxseed enriched diet decreased ovarian cancer incidence and prostaglandin E 2 in hens. Gynecologic Oncology. 2013;130(3):620-8.
dc.relationVerma M. Cancer control and prevention by nutrition and epigenetic approaches. Antioxidants & redox signaling. 2012;7(2):355-64.
dc.relationGoyal R, Goyal D, Leitzke A, Gheorghe CP, Longo LD. Brain renin-angiotensin system: fetal epigenetic programming by maternal protein restriction during pregnancy. Reproductive Sciences. 2010;17(3):227-38.
dc.relationJang H, Serra C. Nutrition, epigenetics, and diseases. Clinical Nutrition Research. 2014;3(1):1-8.
dc.relationSmith CJ, Ryckman KK. Epigenetic and developmental influences on the risk of obesity, diabetes, and metabolic syndrome. Targets and Therapy. 2015;8(2015):295.
dc.relationFriso S, Pizzolo F, Choi SW, Guarini P, Castagna A, Ravagnani V, Olivieri O, et al. Epigenetic control of 11 beta-hydroxysteroid dehydrogenase 2 gene promoter is related to human hypertension. Atherosclerosis. 2008;199(2):323-7.
dc.relationFriso S, Carvajal CA, Fardella CE, Olivieri O. Epigenetics and arterial hypertension: the challenge of emerging evidence. Translational Research. 2015;165(1):154-65.
dc.relationZill P, Baghai TC, Schüle C, Born C, Früstück C, Büttner A, Bondy B, et al. DNA methylation analysis of the angiotensin converting enzyme (ACE) gene in major depression. PLoS One. 2012;7(7):e40479.
dc.relationCho HM, Lee HA, Kim HY, Han HS, Kim IK. Expression of Na+-K+-2Cl-cotransporter 1 is epigenetically regulated during postnatal development of hypertension. American Journal of Hypertension. 2011;24(12):1286.
dc.relationFan R, Wang WJ, Zhong QL, Duan SW, Xu XT, Hao LM, Zhang LN, et al. Aberrant methylation of the GCK gene body is associated with the risk of essential hypertension. Molecular Medicine Reports. 2015;12(2):2390-4.
dc.relationDeCicco D, Zhu H, Brureau A, Schwaber JS, Vadigepalli R. MicroRNA network changes in the brain stem underlie the development of hypertension. Physiological Genomics. 2015;47(9):388-99.
dc.relationChango A, Pogribny IP. Considering maternal dietary modulators for epigenetic regulation and programming of the fetal epigenome. Nutrients. 2015;7(4):2748-70.
dc.relationDe Gonzalo-Calvo D, Dávalos A, Montero A, García-González Á, Tyshkovska I, González-Medina A, Díaz-Martínez ÁE, et al. Circulating inflammatory miRNA signature in response to different doses of aerobic exercise. Journal of Applied Physiology. 2015;119(2):124-34.
dc.relationBouhairie VE, Goldberg AC. Familial hypercholesterolemia. Endocrinology and Metabolism Clinics of North America. 2016;45(1):1-16.
dc.relationTurunen MP, Aavik E, Ylä-Herttuala S. Epigenetics and atherosclerosis. Biochimica et Biophysica Acta (BBA)-General Subjects. 2009;1790(9):886-91.
dc.relationTalmud PJ, Stephens JW, Hawe E, Demissie S, Cupples LA, Hurel SJ, Ordovas JM, et al. The significant increase in cardiovascular disease risk in APOEε4 carriers is evident only in men who smoke: potential relationship between reduced antioxidant status and APOE4. Annals of Human Genetics. 2005;69(6):613-22.
dc.relationBreitling LP. Current genetics and epigenetics of smoking/tobacco-related cardiovascular disease significance. Arteriosclerosis, Thrombosis, and Vascular Biology. 2013;33(7):1468-72.
dc.relationSaban KL, Matthews HL, DeVon HA, Janusek LW. Epigenetics and social context: implications for disparity in cardiovascular disease.Aging and Disease. 2014;5(5):346-55.
dc.relationXiao Y, Su X, Huang W, Zhang J, Peng C, Huang H, Ling W, et al. Role of S-adenosylhomocysteine in cardiovascular disease and its potential epigenetic mechanism. The International Journal of Biochemistry & Cell Biology. 2015;67(2015):158-66.
dc.relationSayed ASM, Xia K, Li F, Deng X, Salma U, Li T, Peng J, et al. The diagnostic value of circulating microRNAs for middle-aged (40–60-year-old) coronary artery disease patients. Clinics. 2015;70(4):257-63.
dc.relationSeeger T, Boon RA. MicroRNAs in cardiovascular ageing. Journal of Physiology. 2015;594(8):2085-94.
dc.relationBasile KJ, Johnson ME, Xia Q, Grant SF. Genetic susceptibility to type 2 diabetes and obesity: follow-up of findings from genome-wide association studies. International Journal of Endocrinology. 2014:1-13.
dc.relationPark LK, Friso S, Choi SW. Nutritional influences on epigenetics and age-related disease. Proceedings of the Nutrition Society. 2012;71(01):75-83.
dc.relationSchwenk RW, Vogel H, Schürmann A. Genetic and epigenetic control of metabolic health. Molecular Metabolism. 2013;2(4):337-47.
dc.relationPeters J. The role of genomic imprinting in biology and disease: an expanding view. Nature Reviews Genetics. 2014;15(8):517-30.
dc.relationCrocker MK, Yanovski JA. Pediatric obesity: etiology and treatment. Endocrinology and Metabolism Clinics of North America. 2009;38(3):525-48.
dc.relationWaalen J. The genetics of human obesity. Translational Research. 2014;164(4):293-301.
dc.relationDoo M, Kim Y. Obesity: interactions of genome and nutrients intake. Preventive Nutrition and Food Science. 2015;20(1):1.
dc.relationGarver WS, Newman SB, Gonzales-Pacheco DM, Castillo JJ, Jelinek D, Heidenreich RA, Orlando RA. The genetics of childhood obesity and interaction with dietary macronutrients. Genes & Nutrition. 2013;8(3):271-87.
dc.relationPerrone L, Marzuillo P, Grandone A, Del Giudice EM. Chromosome 16p11.2 deletions: another piece in the genetic puzzle of childhood obesity. Italian Journal of Pediatrics. 2010;36(1):43.
dc.relationMilagro FI, Mansego ML, De Miguel C, Martínez JA. Dietary factors, epigenetic modifications and obesity outcomes: progresses and perspectives. Molecular Aspects of Medicine. 2013;34(4):782-812.
dc.relationRuiz-Hernandez A, Kuo CC, Rentero-Garrido P, Tang WY, Redon J, Ordovas JM, Tellez-Plaza M, et al. Environmental chemicals and DNA methylation in adults: a systematic review of the epidemiologic evidence. Clinical Epigenetics. 2015;7(1):55.
dc.relationDauncey MJ. Recent advances in nutrition, genes and brain health. Proceedings of the Nutrition Society. 2012;71(4):581-91.
dc.relationHernández DG, Nalls MA, Gibbs JR, Arepalli S, Van der Brug M, Chong S, Singleton AB, et al. Distinct DNA methylation changes highly correlated with chronological age in the human brain. Human Molecular Genetics. 2011;20(6):1164-72.
dc.relationDay JJ, Sweatt JD. Epigenetic mechanisms in cognition. Neuron. 2011;70(5):813-29.
dc.relationLandgrave-Gómez J, Mercado-Gómez O, Guevara-Guzmán R. Epigenetic mechanisms in neurological and neurodegenerative diseases. Frontiers in Cellular Neuroscience. 2015;9(58):1-11.
dc.relationAroniadou-Anderjaska V, Fritsch B, Qashu F, Braga MF. Pathology and pathophysiology of the amygdala in epileptogenesis and epilepsy. Epilepsy Research. 2008;78(2):102-16.
dc.relationPozzi D, Lignani G, Ferrea E, Contestabile A, Paonessa F, D’alessandro R, Valtorta F, et al. REST/NRSF-mediated intrinsic homeostasis protects neuronal networks from hyperexcitability. The EMBO Journal. 2013;32(22):2994-3007.
dc.relationLu T, Aron L, Zullo J, Pan Y, Kim H, Chen Y, Bennett DA. et al. REST and stress resistance in ageing and Alzheimer’s disease. Nature. 2014;507(7493):448-54.
dc.relationOrta-Salazar E, Aguilar-Vázquez A, Martínez-Coria H, Luquín-De Anda S, Rivera-Cervantes M, Beas-Zarate C, Díaz-Cintra S, et al. REST/NRSF-induced changes of ChAT protein expression in the neocortex and hippocampus of the 3xTg-AD mouse model for Alzheimer’s disease. Life Sciences. 2014;116(2):83-9.
dc.relationJandhyala SM, Talukdar R, Subramanyam C, Vuyyuru H, Sasikala M, Reddy DN. Role of the normal gut microbiota. World Journal of Gastroenterology: WJG. 2015;21(29):8787-803.
dc.relationRosenbaum M, Knight R, Leibel RL. The gut microbiota in human energy homeostasis and obesity. Trends in Endocrinology & Metabolism. 2015;26(9):493-501.
dc.relationMillion M, Lagier JC, Yahav D, Paul M. Gut bacterial microbiota and obesity. Clinical Microbiology and Infection. 2013;19(4):305-13.
dc.relationMarsland BJ, Salami O. Microbiome influences on allergy in mice and humans. Current Opinion in Immunology. 2015;36(2015):94-100.
dc.relationGibson MK, Crofts TS, Dantas G. Antibiotics and the developing infant gut microbiota and resistome. Current Opinion in Microbiology. 2015;27(2015):51-6.
dc.relationEvans HM, Long JA. Characteristic effects upon growth, oestrus and ovulation induced by the intraperitoneal administration of fresh anterior hypophyseal substance. Proc Natl Acad Sci USA. 1922;8(3):38-9.
dc.relationBierring E, Nielsen E. The composition of the tissues of albino rats treated with alkaline anterior pituitary extracts. Biochem J. 1932;26(4):1015-21.
dc.relationLee MO, Schaffer NK. Anterior pituitary growth hormone and the composition of growth. The Journal of Nutrition. 1934;7(3):337-63.
dc.relationLi C, Evans M, Simpson E. Isolation and properties of the anterior hypophyseal growth hormone. Journal of Biological Chemistry. 1945;159:353-66.
dc.relationLi C, Simpson M, Evans HM. The gigantism produced in normal rats by injection of the pituitary growth hormone; main chemical components of the body. Growth. 1948;12(1):39-42.
dc.relationDoyle L, Turman E, Andrews F. Some pathological effects of anterior pituitary growth hormone preparations on swine. American Journal of Veterinary Research. 1956;17(63):174-8.
dc.relationHenricson B, Ulberg S. Efffects of pig growth hormone on pigs. Journal of Animal Science. 1960;19:1002-8.
dc.relationGalton DJ, Bray GA. Studies on lipolysis in human adipose cells. J Clin Invest. 1967 abr.;46(4):621-9.
dc.relationLi C, Papkoff H. Preparation and properties of growth hormone from human and monkey pituitary glands. Science. 1956;124:1293-4.
dc.relationRabens M. Preparation of growth hormone from pituitaries of man and monkeys. Science. 1957;125:883-4.
dc.relationFrasier SD. The not-so-good old days: Working with pituitary growth hormone in North America, 1956 to 1985. J Pediatr. 1997;7;131(1 supl.):S1-S4.
dc.relationBuchanan C, Preece M, Milner R. Mortality, neoplasia, and Creutzfeldt-Jakob disease in patients treated with human pituitary growth hormone in the United Kingdom. BMJ Clinical Research. 1986;302(6780):824-8.
dc.relationSalmon W, Daughaday W. A hormonally controlled serum factor which stimulates sulfate incorporation by cartilage in vitro. The Journal of Laboratory and Clinical Medicine. 1957;49(6):825-36.
dc.relationDaughaday W, Hall K, Raben M, Salmon WJ, Van den Brande J, Van Wyk J. Somatomedin: proposed designation for sulphation factor. Nature. 1972;235(5333):107.
dc.relationGroen J, Kamminga C, Willebrands A. Evidence for the presence of insulin in blood serum: a method for the approximate determination of insulin content of blood. Journal of Clinical Investigation. 1952;31:97-106.
dc.relationBurgi H, Muller W, Humbel R, Labbart A, Froesch E. Non-suppressible insulin-like activity from human serum. I. Physicochemical properties, extraction and partial purification. Biochemical and Biophysical Acta. 1966;129:349-59.
dc.relationFroesch E, Burgi H, Ramseier E, Bally P, Labhart A. Antibody suppressible and non-suppresisible insulin-like activities in human serum and physiologic significance. Journal of Clinical Investigation. 1963;42:1816-34.
dc.relationRinderknecht E, Humbel R. The aminoacid sequence of human insulin-like growth factor 1 and its structural homology with proinsulin. Journal of Biological Chemistry. 1978;253:2769-76.
dc.relationDaughaday W, Hall K, Salmon WJ, Van den Brande J, Van Wyk J. On the nomenclature of somatomedins and insulin-like growth factors. Journal of Clinical Endocrinology and Metabolism. 1987;65:1075-6.
dc.relationIsaksson O, Jansson O, Gause I. Growth hormone stimulates longitudinal bone growth directly. Science. 1982;216:1237-9.
dc.relationGreen HF, Morikawa MF, Nixon T. A dual effector theory of growth-hormone action. Differentiation. 1985;29:195-8.
dc.relationLupu F, Terwilliger JD, Lee K, Segre GV, Efstratiadis A. Roles of growth hormone and insulin-like growth factor 1 in mouse postnatal growth. Dev Biol. 2001 en.;229(1):141-62.
dc.relationYakar S, Liu J, Stannard B, Butler A, Accili D, Sauer B, et al. Normal growth and development in the absence of hepatic insulin-like growth factor I. Proc Natl Acad Sci USA. 1999 abr.;96(13):7324-9.
dc.relationAnnunziata M, Granata RF, Ghigo E. The IGF system. Acta Diabetológica. 2011;48(1):1-9.
dc.relationDenley A, Carroll JM, Brierley GV, Cosgrove L, Wallace J, Forbes B, et al. Differential activation of insulin receptor substrates 1 and 2 by insulin-like growth factor-activated insulin receptors. Molecular and Cellular Biology. 2007 my.;27(10):3569-77.
dc.relationScott C, Weiss EP. Soluble M6P/IGFIIR in the circulation. Best Pract Res Clin Endocrinol Metab. 2015;29(5):723-33.
dc.relationRowzee AM, Ludwig DL, Wood TL. Insulin-like growth factor type 1 receptor and insulin receptor isoform expression and signaling in mammary epithelial cells. Endocrinology. 2009 ag. 1;150(8):3611-9.
dc.relationCourtland H, DeMambro V, Maynard J, Sun H, Elis S, Rosen C, et al. Sex-specific regulation of body size and bone slenderness by the acid labile subunit. Journal of Bone and Mineral Research. 2010;25(9):2059-68.
dc.relationKennedy OD, Sun H, Wu Y, Courtland H, Williams GA, Cardoso L, et al. Skeletal response of male mice to anabolic hormone therapy in the absence of the IGFALS gene. Endocrinology. 2014 mzo. 1;155(3):987-99.
dc.relationDomené H, Hwa V, Argente J, Wit J, Camacho-Hübner C, Jasper H, et ál. Human acid-labile subunit deficiency: clinical, endocrine and meabolic consequences. Hormone Research in Paediatrics. 2009;72(3):129-41.
dc.relationFerry RJ, Katz LEL, Grimberg A, Cohen P, Weinzimer SA. Cellular actions of insulin-like growth factor binding proteins. Hormone and Metabolic Research. 1999 febr.;31:192-202.
dc.relationOster MH, Fielder PJ, Levin N, Cronin MJ. Adaptation of the growth hormone and insulin-like growth factor-I axis to chronic and severe calorie or protein malnutrition. J Clin Invest. 1995 my.;95(5):2258-65.
dc.relationHo KY, Veldhuis JD, Johnson ML, Furlanetto R, Evans WS, Alberti KG, et al. Fasting enhances growth hormone secretion and amplifies the complex rhythms of growth hormone secretion in man. J Clin Invest. 1988 abr.;81(4):968-75.
dc.relationBonkowski MS, Rocha JS, Masternak MM, Al Regaiey KA, Bartke A. Targeted disruption of growth hormone receptor interferes with the beneficial actions of calorie restriction. Proc Natl Acad Sci USA. 2006 en.;103(20):7901-5.
dc.relationSjogren K, Liu J, Blad K, Skrtic S, Vidal O, Wallenius V, et al. Liver-derived insulin-like growth factor I (IGF-I) is the principal source of IGF-I in blood but is not required for postnatal body growth in mice. Proc Natl Acad Sci USA. 1999 abr.;96(12):7088-92.
dc.relationNaranjo WM, Yakar S, Sanchez-Gomez M, Perez AU, Setser J, LeRoith D. Protein Calorie Restriction Affects Nonhepatic IGF-I Production and the Lymphoid System: Studies Using the Liver-Specific IGF-I Gene-Deleted Mouse Model. Endocrinology 2002;143(6):2233-2241.
dc.relationMejía-Naranjo W, Yakar S, Bernal R, LeRoith D, Sánchez-Gómez M. Regulation of the splenic somatotropic axis by dietary protein and insulin-like growth factor-I in the rat. Growth Hormone & IGF Research. 2016 febr.;13(5):254-63.
dc.relationMejía-Naranjo W, Sánchez-Gómez M. Protein malnutrition up-regulates growth hormone receptor expression in rat splenic B lymphocytes. Biomédica. 2004;24(4):403-12.
dc.relationDunn SE, Kari FW, French J, Leininger JR, Travlos G, Wilson R, et al. Dietary restriction reduces insulin-like growth factor I levels, which modulates apoptosis, cell proliferation, and tumor progression in p53-deficient mice. Cancer Research. 1997 nov.;57(21):4667-72.
dc.relationFontana L, Weiss EP, Villareal DT, Klein S, Holloszy JO. Long-term effects of calorie or protein restriction on serum IGF-1 and IGFBP-3 concentration in humans. Aging Cell. 2008;7(5):681-7.
dc.relationGastón M. El endotelio vascular. Flebología y linfología. Lecturas Vasculares. 2008 dic.;3(9):477-540.
dc.relationJiménez CE, Correa JR, Burgos R. Conversión tardía de una endoprótesis aórtica a cirugía abierta: ¿se debe extraer toda la endoprótesis? Revista Colombiana de Cirugía. 2013;28(1):48-53.
dc.relationPérez AO, Castillo JA, Santos P, Martínez D, Argudín PJ. Estudio de los factores endoteliales antitrombóticos. Revista Cubana de Investigaciones Biomédicas. 1997;16(3):133-9.
dc.relationRajendran P, Rengarajan T, Thangavel J, Nishigaki Y, Sakthisekaran D, Sethi G, Nishigaki I. The vascular endothelium and human diseases. International Journal of Biological Sciences. 2013;9(10):1057-69.
dc.relationFélétou M. The endothelium, Part I: Multiple functions of the endothelial cells–focus on endothelium-derived vasoactive mediators. In: Colloquium Series on Integrated Systems Physiology: From Molecule to Function. Life Sciences. 2011;3(4):1-306.
dc.relationMoncada S, Higgs EA. The discovery of nitric oxide and its role in vascular biology. British Journal of Pharmacology. 2006;147(no S1):S201.
dc.relationLaRosa JC, Hunninghake D, Bush D, Criqui MH, Getz GS, Gotto AM Jr, Grundy SM, Rakita L, Robertson RM, Weisfeldt ML, et al. The cholesterol facts. A summary of the evidence relating dietary fats, serum cholesterol, and coronary heart disease. A joint statement by the American Heart Association and the National Heart, Lung, and Blood Institute. The Task Force on Cholesterol Issues, American Heart Association. Circulation. 1990;81(5):1721-33.
dc.relationKaur JA. A comprehensive review on metabolic syndrome. Cardiology Research and Practice. 2014;1-21. DOI:10.1155/2014/943162
dc.relationSkalski JH. Myocardial infarction and angina pectoris in the history of Polish medicine. Pol Arch Med Wewn. 2008;118(4):243-7.
dc.relationDuffin JM. The cardiology of RTH Laennec. Medical History. 1989;33(1):42-71.
dc.relationCantillo JDJ, Iglesias A, Restrepo JF. Hitos históricos de las vasculitis de pequeños vasos. Revista Colombiana de Reumatología. 2006;13(2):142-53.
dc.relationMayerl C, Lukasser M, Sedivy R, Niederegger H, Seiler R, Wick G. Atherosclerosis research from past to present—on the track of two pathologists with opposing views, Carl von Rokitansky and Rudolf Virchow. Virchows Arch. 2006 jul.;449(1):96-103.
dc.relationSteiner I, Laco J. Rokitansky on atherosclerosis. Československá Patologie. 2008 en.;44(1):23.
dc.relationBodary PF, Eitzman DT. Vascular biology of atherosclerosis. Classic papers in coronary angioplasty [Internet]. Springer: Michael Cleman; 2006. p. 1-20. Disponible en: https://link.springer.com/chapter/10.1007/1-84628-454-6_1
dc.relationhistoriadelamedicina.org. Adolf Kussmaul (1822-1902) [Internet]. 2015. Disponible en: http://www.historiadelamedicina.org/kussmaul.html
dc.relationKonstantinov IE, Jankovic GM. Alexander I. Ignatowski: A pioneer in the study of atherosclerosis. Texas Heart Institute Journal. 2013;40(3):246.
dc.relationKonstantinov IE, Mejevoi N. Nikolai N. Anichkov and his theory of atherosclerosis. Texas Heart Institute Journal. 2006;33(4):417.
dc.relationHerreros B. La arteriosclerosis a través de la historia. Prevención primaria de la arteriosclerosis. Madrid: Además Comunicación Gráfica; 2009. p. 11-28.
dc.relationSarmento-Leite R, Krepsky AM, Gottschall CA. Acute myocardial infarction: One century of history. Arquivos Brasileiros de Cardiologia. 2001;77(6):602-10.
dc.relationFriedberg CK. Diseases of the heart. Filadelfia: Saunders; 1949.
dc.relationMalpartida Tello B. Libro de la historia de la cirugía cardiovascular. Perú; 2010.
dc.relationAbejón E. La aterosclerosis como desencadenante de la patología cardiovascular. Revista de la Facultad de Ciencias de la Salud. 2010;7:1-28.
dc.relationSantana S, Montero RM, Sánchez AL, Valdés AC, Vidal I. Caracterización de los factores de riesgo de la aterosclerosis. Ciencias Médicas de Pinar del Río. 2016;20(1):136-41.
dc.relationMorató TM, Núñez JM. Concepto y componentes del riesgo residual. Clínica e Investigación en Arteriosclerosis. 2012;24:8-13.
dc.relationBodary PF, Eitzman DT. Vascular biology of atherosclerosis. En: Handler C, Cleman M, editores. Classic papers in coronary angioplasty. Springer; 1981. p. 1-6. Disponible en: http://eknygos.lsmuni.lt/springer/80/1-20.pdf
dc.relationMenéndez A, Fernández-Britto JE. Metabolismo de la homocisteína y su relación con la aterosclerosis. Cubana de Investigaciones Biomédicas. 1999;18(3):155-68.
dc.relationGilde AJ, Fruchart C, Staels B. Peroxisome proliferator-activated at the crossroads of obesity, diabetes, and cardiovascular disease. Journal of the American College of Cardiology. 2006;48(9):A32.
dc.relationGerrity RG. The role of the monocyte in atherogenesis: I. Transition of blood-borne monocytes into foam cells in fatty lesions. The American Journal of Pathology. 1981;103(2):181.
dc.relationBertomeu A, Zambón, D. La placa aterogénica: fisiopatología y consecuencias clínicas. Med Integra. 2002;40(9):394-405.
dc.relationMontoya PA. Síndrome metabólico en una población rural y una población urbana de la Región Andina colombiana. Red Revista Med. 2007;15(2):154-62.
dc.relationSchaar JA, Muller JE, Falk E, Virmani R, Fuster V, Serruys PW, Maseri A. Terminology for high-risk and vulnerable coronary artery plaques. European Heart Journal. 2004;25(12):1077-82.
dc.relationPackard DS, Denis SJ, Reily MD. Lipoprotein-associated phospholipase A2 as an independent predictor of coronary heart disease. N Engl J Med. 2000;343(16):1148-52.
dc.relationSorell L, Bermúdez F, Bermudez V, Rojas E, Chourio A, Canelon R, Martínez S, et al. De un nuevo antígeno a un factor de riesgo cardiovascular. Rev Lat Hipertensión. 2007;2(6):165-78.
dc.relationAssmann G, Gotto AM. HDL cholesterol and protective factors in atherosclerosis. Circulation. 2004;109(23 supl. 1):8.
dc.relationLiao JK. Effects of statins on 3-hydroxy-3-methylglutaryl coenzyme a reductase inhibition beyond low-density lipoprotein cholesterol. The American Journal of Cardiology. 2005;96(5):24-33.
dc.relationBertomeu V. Tratamiento con estatinas en pacientes de alto riesgo cardiovascular en las guías europeas frente a las guías norteamericanas como base del tratamiento de la dislipemia. Sociedad Española de Cardiología. 2014;2(1):1-29.
dc.relationAntonopoulos A, Margaritis M, Lee R, Channon K, Antoniades C. Current Pharmaceutical Design. 2012;18(11):1519-30.
dc.relationFDA Briefing Document. Endocrinologic and Metabolic Drugs Advisory Committee (EMDAC). United States: Center for Drug Evaluation & Research U.S. Food & Drug Administration; 2015.
dc.relationAntonopoulos A, Margaritis M, Lee R, Channon K, Antoniades C. Statins as anti-inflammatory agents in atherogenesis: molecular mechanisms and lessons from the recent clinical trials. Current Pharmaceutical Design. 2012;18(11):1519-30.
dc.relationMostaza JM, Lahoz C, García-Iglesias F, Estirado E, Ruiz-Rivas J, González-Alegre T, Laguna F. Uso de las estatinas en prevención primaria. IT del Sistema Nacional de Salud. 2011;35(2):46-56.
dc.relationSociedad Española de Arteriosclerosis. Fibratos en prevención primaria y secundaria. Clin Invest Arterioscl. 2016;28(supl. 3):3-10.
dc.relationMckenney J RE. Statins. In: Ballantyne CM, editor. Clinical Lipidology A Companion to Braunwald’s Heart Disease. Nueva York: Elsevier; 2015. p. 227-56.
dc.relationMarx N, Kehrle B, Kohlhammer K, Grüb M, Koenig W, Hombach V, Plutzky J, et al. PPAR activators as antiinflammatory mediators in human T lymphocytes. Circulation Research. 2002;90(6):703-10.
dc.relationMatos SL, Paula HD, Pedrosa ML, Santos RCD, Oliveira ELD, Chianca Júnior DA, Silva ME. Dietary models for inducing hypercholesterolemia in rats. Brazilian Archives of Biology and Technology. 2005;48(2):203-9.
dc.relationDave T, Ezhilan J, Vasnawala H, Somani V. Plaque regression and plaque stabilisation in cardiovascular diseases. Indian Journal of Endocrinology and Metabolism. 2013;17(6):983.
dc.relationShepherd J, Packard CJ. Regression of coronary atherosclerosis: is it possible? British Heart Journal. 1988;59(2):149.
dc.relationDavies MJ, Krikler DM, Katz D. Atherosclerosis: inhibition of regression as therapeutic possibilities. British Heart Journal. 1991;65(6):302.
dc.relationKalanuria AA, Nyquist P, Ling G. The prevention and regression of atherosclerotic plaques: emerging treatments. Vascular Health and Risk Management. 2012;8:549-61.
dc.relationHansson GK, Jonasson L, Holm J, Claesson-Welsh L. Class II MHC antigen expression in the atherosclerotic plaque: smooth muscle cells express HLA-DR, HLA-DQ and the invariant gamma chain. Clinical and Experimental Immunology. 1986;64(2):261-8.
dc.relationRader DJ. Atherosclerosis, acute coronary events, and cholesterol-lowering: a new paradigm. Value in Health. 1998;1(2):101-04.
dc.relationSchartl M, Bocksch W, Koschyk DH, Voelker W, Karsch KR, Kreuzer J, et al. Use of intravascular ultrasound to compare effects of different strategies of lipid-lowering therapy on plaque volume and composition in patients with coronary artery disease. Circulation. 2001;104(4):387-92.
dc.relationBallantyne CJ. Therapy. En: Ballantyne C, editor. Clinical Lipidology. Canadá: Elsevier; 2015. p. 185-209.
dc.relationArchbold RA, Timmis AD. Cholesterol lowering and coronary artery disease: mechanisms of risk reduction. Heart. 1998;80(6):543-7.
dc.relationYanai H, Yoshida H, Tomono Y, Tada N. Atherosclerosis imaging in statin intervention trials. Journal of the Association of Physicians. 2007;100(5):253-62.
dc.relationChoudhury RP, Fuster V, Badimon JJ, Fisher EA, Fayad ZA. MRI and characterization of atherosclerotic plaque. Arteriosclerosis, Thrombosis, and Vascular Biology. 2002;22(7):1065-74.
dc.relationJensen LO, Thayssen P, Pedersen KE, Stender S, Haghfelt T. Regression of coronary atherosclerosis by simvastatin. Circulation. 2004;110(3):265-70.
dc.relationAliosvi RR, Lázaro RV, Michel LA, Roxana CC. La prevención y regresión de la ateroesclerosis. Tratamientos emergentes. Revista Finlay. 2014:117-29.
dc.relationFox K, Darly C. Angina: identifying and managing the patient at risk. Dialogues in Cardiovascular Medicine. 2002;7(2):71-91.
dc.relationScandinavian Simvastatin Survival Study Group. Randomised trial of cholesterol lowering in 4444 patients with coronary heart disease: the Scandinavian Simvastatin Survival Study (4S). The Lancet. 1994;344(8934):1383-9.
dc.relationPérez-Méndez O. Lipoproteínas de alta densidad (HDL). ¿Un objetivo terapéutico en la prevención de la aterosclerosis? Archivos de Cardiología de México. 2004;74(1):53-67.
dc.relationBadimon L, Vilahur G. LDL-cholesterol versus HDL-cholesterol in the atherosclerotic plaque: inflammatory resolution versus thrombotic chaos. Annals of the New York Academy of Sciences. 2012;1254:18-32.
dc.relationDepartment of Pharmaceutical Analysis, Yalamarthy Pharmacy College, Andhra University, Vishakapatnam, India. Atherosclerosis-coronary heart disease and the recent advancements in the treatment of atherosclerosis. Journal of Medical and Health Sciences. 2017;6(1):1-9.
dc.relationKim MS, Pinto SM, Getnet D, Nirujogi RS, Manda SS, Chaerkady R, Thomas JK. A draft map of the human proteome. Nature. 2014;509(7502):575-81.
dc.relationElikir G, Cúneo C, Lorenzatti A, Schreier L, Corral P, Aimone D, Vilariño J. Consenso de la Sociedad Argentina de Lípidos sobre hipercolesterolemia familiar. Sociedad Argentina de Lípidos. 2014:1-51.
dc.relationMatiz HY, Gutiérrez de Piñeres O. Electrocardiografía básica: del trazado al paciente. Bogotá, Colombia: Kimpres; 2006.
dc.relationLibby P. Lipoproteins: mechanisms for atherogenesis and progression of atherothrombotic disease. En: Ballantyne C, editor. Clinical lipidology. Canadá: Elsevier; 2015. p. 53-67.
dc.relationGregory, G. Rose, Q. Special Patient populations: acute coronary syndrome. En: Ballantyne C, editor. Clinical lipidology. A companion to Braunwald’s heart disease. Canadá: Elsevier; 2015. p. 464-8.
dc.relationInternational Diabetes Federation. IDF Diabetes Atlas. 7.a ed. International Diabetes Federation; 2015. p. 1-144.
dc.relationAmerican Diabetes Association. Diagnosis and classification of diabetes mellitus. Diabetes Care. 2008;31(supl. 1):S60.
dc.relationAmerican Diabetes Association. Standards of medical care in diabetes 2016. Diabetes Care. 2016 ene.;39(supl. 1):1:S1-S2.
dc.relationChamberlain JJ, Rhinehart AS, Shaefer Jr CF, Neuman A. Diagnosis and management of diabetes: synopsis of the 2016 American Diabetes Association Standards of Medical Care in Diabetes. Annals of Internal Medicine. 2016;64(8):542-54.
dc.relationAmerican Diabetes Association. Standards of medical care in diabetes 2016. The Journal of Clinical and Applied Research and Education. 2016;39(supl. 1):3-110.
dc.relationInzucchi SE, Bergenstal RM, Buse JB, Diamant M, Ferrannini E, Nauck M, et al. Management of hyperglycemia in type 2 diabetes, 2015: a patient-centered approach: update to a position statement of the American Diabetes Association and the European Association for the Study of Diabetes. Diabetes Care. 2015 ene.;38(1):140-9.
dc.relationSeguí M. Actualización 2015 del algoritmo ADA/EASD de tratamiento de la hiperglucemia. Diabetes Care. 2015;38(1):140-9.
dc.relationAmerican Diabetes Association. Foundations of care: education, nutrition, physical activity, smoking cessation, psychosocial care, and immunization. Diabetes Care. 2015;38(supl. 1):20-30.
dc.relationIglesias R, Barutell L, Artola S, Serrano R. Resumen de las recomendaciones de la American Diabetes Association (ADA) 2014 para la práctica clínica en el manejo de la diabetes mellitus. Diabetes Práctica. 2014;5(supl. extr. 2):1-14.
dc.relationAmerican Diabetes Association. Standards of medical care in diabetes – 2015. Abridged for primary care providers. Clinical Diabetes Journal. 2015;33(2):97-111.
dc.relationMetz JA, Stern JS, Kris-Etlerton P, et al. A randomized trial of improve weight loss with a prepared meal plan in overweight and obese patients: impact on cardiovascular risk reduction. Arch Intern Med. 2000;160(2):150-8.
dc.relationEspeland M. Reduction in weight and cardiovascular disease risk factors in individuals with type 2 diabetes: one-year results of the Look AHEAD trial. Diabetes Care. 2007 jun.;30(6):1374-83.
dc.relationFAO. Human energy requirements. Roma: Report of a Joint FAO/WHO/UNU Expert Consultation; 2001.
dc.relationFeinman RD, et al. Dietary carbohydrate restriction as the first approach in diabetes management: critical review and evidence base. Nutrition. 2015;31(1):1-13.
dc.relationCummings JH, Stephen AM. Carbohydrate terminology and classification. European Journal of Clinical Nutrition. 2007;61:S18.
dc.relationAsociación Latinoamericana de Diabetes. Guías ALAD sobre el diagnóstico, control y tratamiento de la diabetes mellitus tipo 2 con medicina basada en la evidencia. Revista de la ALAD. 2013;7:52-63.
dc.relationImai S, Fukui M, Ozasa N, Ozeki T, Kurokawa M, Komatsu T, Kajiyama S. Eating vegetables before carbohydrates improves postprandial glucose excursions. Diabetic Medicine. 2013;30(3):370-2.
dc.relationFoster-Powell K, Holt S, Brand-Miller J. International table of glycemic index and glycemic load values: 2002. The American Journal of Clinical Nutrition. 2002;76(1):5-56.
dc.relationColberg SR, Sigal RJ, Fernhall B, Regensteiner JG, Blissmer BJ, Rubin RR, Braun B. Exercise and type 2 diabetes the American College of Sports Medicine and the American Diabetes Association: joint position statement. Diabetes Care. 2010;33(12):e167.
dc.relationWalsh J, Roberts R. Pumping insulin. 3.ª ed. San Diego, California: Torrey Pines Press; 2010.
dc.relationWalsh J, Roberts R. Pumping Insulin. 3.ª ed. United States of America: Everything for Success on a Pump and CGM; 2000.
dc.relationLevine JA, Schleusner SJ, Jensen MD. Energy expenditure of nonexercise activity1-4; 2000.
dc.relationSeale JL. Energy expediture measurements in relation to energy requirements. Am J Clin Nutr. 1995;62(supl.):1042S-6S.
dc.relationBistrian B. Comment on “Guidelines for the Provision and Assessment of Nutrition Support Therapy in the Adult Critically Ill Patient”. Journal of Parenteral and Enteral Nutrition. 2010 my.;34(3):348-9.
dc.relationPace N, Rathbun EN. Studies on body composition III. The body water and chemically combined nitrogen content in relation to fat content. J Biol Chem. 1945;158:685-91.
dc.relationMataix J, Martínez JA. Balance de energía corporal. En: Nutrición y alimentación humana. Barcelona: Mataix J Ed. Océano/Ergon; 2006. p. 703-22.
dc.relationAlemán-Mateo H, Salazar G, Hernández-Triana M, Valencia ME. Total energy expenditure, resting metabolic rate and physical activity level in free-living rural elderly men and women from Cuba, Chile and Mexico. Eur J Clin Nutr. 2006;60:1258-65.
dc.relationHenry CJK. Basal metabolic rate studies in humans: measurement and development of new equations. Public Health Nutr. 2005;8:1133-52.
dc.relationKirkland LL, Kashiwagi DT, Brantley S, Scheurer D, Varkey P. Nutrition in the hospitalized patient. J Hosp Med. 2013;8(1):52e8.
dc.relationFerrannini E. The theoretical bases of indirect calorimetry: a review. Metabolism. 1988; 37(3):287-301.12.
dc.relationWalker RN, Heuberger RA. Predictive equations for energy needs for the critically ill. Respir Care. 2009;54:509-22.
dc.relationRapp RP, Young DB, Twyman D. The favorable effect of early parenteral feeding on survival in head-injured patients. J Neurosurgery. 1983;58:906-12.
dc.relationYoung B, Ott L, Twyman D. The effect of nutritional support on outcome from severe head injury. J Neurosurg. 1987;67:668-76.
dc.relationKudsk KA, Croce MA, Fabian TC. Enteral versus parenteral feeding: Effects on septic morbidity after blunt and penetrating abdominal trauma. Ann Surg. 1992;215:503-13.
dc.relationWoodcock NP, Zeigler D, Palmer MD, Buckley P, Mitchell CJ, Macfie J. Enteral versus parenteral nutrition: A pragmatic study. Nutrition. 2001;17:1-12.
dc.relationChen F, Wang J, Jiang Y. Influence of different routes of nutrition on the respiratory muscle strength and outcome of elderly patients in respiratory intensive care unit. Chinese Journal of Clinical Nutrition. 2011;1:7-11. Chino.
dc.relationAdams S, Dellinger EP, Wertz MJ. Enteral versus parenteral nutritional support following laparotomy for trauma: A randomized prospective trial. J Trauma. 1986;26(10):882-91.
dc.relationDunham CM, Frankenfield D, Belzberg H, Wiles C, Cushing B, Grant Z. Gut failure- predictor of or contributor to mortality in mechanically ventilated blunt trauma patients? J Trauma. 1994;37(1):30-4.
dc.relationBorzotta AP, Pennings J, Papasadero B. Enteral versus parenteral nutrition after severe closed head injury. J Trauma. 1994;37(3):459-68.
dc.relationHadfield RJ, Sinclair DG, Houldsworth PE, Evans TW. Effects of enteral and parenteral nutrition on gut mucosal permeability in the critically ill. Am J Respi Crit Care Med. 1995;152:1545-8.
dc.relationKalfarentzos F, Kehagias J, Mead N, Kokkinis K, Gogos CA. Enteral nutrition is superior to parenteral nutrition in severe acute pancreatitis: Results of a randomized prospective trial. British J Surg. 1997;84:1665-9.
dc.relationCerra FB, McPherson JP, Konstantinides FN, Konstantinides NN, Teasley KM. Enteral nutrition does not prevent multiple organ failure syndrome (MOFS) after sepsis. Surgery. 1988;104:727-33.
dc.relationCasas M, Mora J, Fort E, Aracil C, Busquets D, Galter S. [Total enteral nutrition vs. total parenteral nutrition in patients with severe acute pancreatitis]. Rev Esp Enferm Dig. 2007;99(5):264-9. Chino.
dc.relationJusto Meirelles CM, de Aguilar-Nascimento JE. Enteral or parenteral nutrition in traumatic brain injury: a prospective randomised trial. Nutr Hosp. 2011 sept.-oct.;26(5):1120-4.
dc.relationWang G, Wen J, Xu L, Zhou S, Gong M, Wen P, Xiao X. Effect of enteral nutrition and ecoimmunonutrition on bacterial translocation and cytokine production in patients with severe acute pancreatitis. J Surg Res. 2013 ag;183(2):592-7.
dc.relationSun JK, Mu XW, Li WQ, Tong ZH, Li J, Zheng SY. Effects of early enteral nutrition on immune function of severe acute pancreatitis patients. World J Gastroenterol. 2013 febr. 14;19(6):917-22.
dc.relationHarvey SE, Parrott F, Harrison DA, Bear DE, Segaran E, Beale R, Bellingan G, Leonard R, Mythen MG, Rowan KM; the CALORIES Trial Investigators. Trial of the Route of Early Nutritional Support in Critically Ill Adults. N Engl J Med. 2014 oct. 1. [Versión electrónica en proceso de publicación].
dc.relationPeterson VM, Moore EE, Jones TN, Rundus C, Emmett M, Moore FA, McCroskey BL, Haddix T, Parsons PE. Total enteral nutrition versus total parenteral nutrition after major torso injury: attenuation of hepatic protein reprioritization. Surgery. 1988 ag.;104(2):199-207.
dc.relationMoore FA, Moore EE, Jones TN, McCroskey BL, Peterson VM. TEN versus TPN following major abdominal trauma - Reduced septic morbidity. J Trauma. 1989;29:916-23.
dc.relationMoore EE, Jones TN. Benefits of immediate jejunostomy feeding after major abdominal trauma–a prospective, randomized study. J Trauma. 1986 oct.;26(10):874-81.
dc.relationChuntrasakul C, Siltharm S, Chinswangwatanakul V, Pongprasobchai T, Chockvivatanavanit S, Bunnak A. Early nutritional support in severe traumatic patients. J Med Assoc Thai. 1996 en.;79(1):21-6.
dc.relationSingh G, Ram RP, Khanna SK. Early post-operative enteral feeding in patients with nontraumatic intestinal perforation and peritonitis. J Am Coll Surg. 1998 ag.;187(2):142-6.
dc.relationPupelis G, Austrums E, Jansone A, Sprucs R, Wehbi H. Randomised trial of safety and efficacy of postoperative enteral feeding in patients with severe pancreatitis: preliminary report. Eur J Surg. 2000;166(5):383-7.
dc.relationPupelis G, Selga G, Austrums E, Kaminski A. Jejunal feeding, even when instituted late, improves outcomes in patients with severe pancreatitis and peritonitis. Nutrition. 2001 febr.;17(2):91-4.
dc.relationChiarelli A, Enzi G, Casadei A, Baggio B, Valerio A, Mazzoleni F. Very early nutrition supplementation in burned patients. Am J Clin Nutr. 1990 jun.;51(6):1035-9.
dc.relationEyer SD, Micon LT, Konstantinides FN, Edlund DA, Rooney KA, Luxenberg MG, Cerra FB. Early enteral feeding does not attenuate metabolic response after blunt trauma. J Trauma. 1993 my.;34(5):639-43.
dc.relationKompan L, Kremzar B, Gadzijev E, Prosek M. Effects of early enteral nutrition on intestinal permeability and the development of multiple organ failure after multiple injury. Intensive Care Med. 1999 febr.;25(2):157-61.
dc.relationMinard G, Kudsk KA, Melton S, Patton JH, Tolley EA. Early versus delayed feeding with an immune-enhancing diet in patients with severe head injuries. J Parenter Enteral Nutr. 2000 my.-jun.;24(3):145-9.
dc.relationDvorak MF, Noonan VK, Belanger L, Bruun B, Wing PC, Boyd MC, Fisher C. Early versus late enteral feeding in patients with acute cervical spinal cord injury: a pilot study. Spine. 2004 my. 1;29(9):E175-80.
dc.relationKompan L, Vidmar G, Spindler-Vesel A, Pecar J. Is early enteral nutrition a risk factor for gastric intolerance and pneumonia? Clin Nutr. 2004 ag.;23(4):527-32.
dc.relationPeck MD, Kessler M, Cairns BA, Chang YH, Ivanova A, Schooler W. Early enteral nutrition does not decrease hypermetabolism associated with burn injury. J Trauma. 2004 dic.;57(6):1143-9.
dc.relationNguyen NQ, Fraser RJ, Bryant LK. The impact of delaying enteral feeding on gastric emptying, plasma cholecystokinin, and peptide YY concentrations in critically ill patients. Crit Care Med. 2008 my.;36(5):1469-74.
dc.relationMoses V, Mahendri NV, John G, Peter JV, Ganesh A. Early hypocaloric enteral nutritional supplementation in acute organophosphate poisoning–a prospective randomized trial. Clin Toxicol. 2009;47(5):419-24.
dc.relationChourdakis M, Kraus MM, Tzellos T, Sardeli C, Peftoulidou M, Vassilakos D. Effect of early compared with delayed enteral nutrition on endocrine function in patients with traumatic brain injury: an openlabeled randomized trial. J Parenter Enteral Nutr. 2012;36(1):108-16.
dc.relationSinger P, Anbar R, Cohen J, Shapiro H, Shalita-Chesner M, Lev S, Grozovski E, Theilla M, Frishman S, Madar Z. The tight calorie control study (TICACOS): a prospective, randomized, controlled pilot study of nutritional support in critically ill patients. Intensive Care Med. 2011 abr.;37(4):601-9.
dc.relationSaffle JR, Larson CM, Sullivan J. A randomized trial of indirect calorimetry-based feedings in thermal injury. J Trauma. 1990 jul.;30(7):776-82.
dc.relationTaylor SJ, Fettes SB, Jewkes C, Nelson RJ. Prospective, randomized, controlled trial to determine the effect of early enhanced enteral nutrition on clinical outcome in mechanically ventilated patients suffering head injury. Crit Care Med. 1999 nov.;27(11):2525-31.
dc.relationMartin CM, Doig GS, Heyland DK, Morrison T, Sibbald WJ; Southwestern Ontario Critical Care Research Network. Multicentre, cluster-randomized clinical trial of algorithms for critical-care enteral and parenteral therapy (ACCEPT). CMAJ. 2004 en. 20;170(2):197-204.
dc.relationDesachy A, Clavel M, Vuagnat A, Normand S, Gissot V, François B. Initial efficacy and tolerability of early enteral nutrition with immediate or gradual introduction in intubated patients. Intensive Care Med. 2008 jun.;34(6):1054-9.
dc.relationDoig GS, Simpson F, Finfer S, Delaney A, Davies AR, Mitchell I, Dobb G. Nutrition Guidelines Investigators of the ANZICS Clinical Trials Group. Effect of evidence-based feeding guidelines on mortality of critically ill adults: a cluster randomized controlled trial. JAMA. 2008 dic. 17;300(23):2731-41.
dc.relationBraunschweig CA, Sheean PM, Peterson SJ, Gomez Perez S, Freels S, Lateef O, et al. Intensive nutrition in acute lung injury: a clinical trial (INTACT). J Parenter Enteral Nutr. 2015;39:13-20.
dc.relationRice TW, Wheeler AP, Thompson BT, Steingrub J, Hite RD, Moss M, Morris A, Dong N, Rock P, National Heart, Lung, and Blood Institute Acute Respiratory Distress Syndrome (ARDS) Clinical Trials Network. Initial trophic vs. full enteral feeding in patients with acute lung injury: the EDEN randomized trial. JAMA. 2012 febr. 22;307(8):795-803. Publicación electrónica 2012 febr. 5. PubMed PMID:22307571.
dc.relationGottschlich MM, Jenkins M, Warden GD, Baumer T, Havens P, Snook JT, Alexander JW. Differential effects of three enteral dietary regimens on selected outcome variables in burn patients. J Parenter Enteral Nutr. 1990 my.-jun.;14(3):225-36.
dc.relationCerra FB, Lehman S, Konstantinides N, Konstantinides F, Shronts EP, Holman R. Effect of enteral nutrient on in vitro tests of immune function in ICU patients: a preliminary report. Nutrition. 1990 ene-febr.;6(1):84-7.
dc.relationBower RH, Cerra FB, Bershadsky B, Licari JJ, Hoyt DB, Jensen GL, Van Buren CT, Rothkopf MM, Daly JM, Adelsberg BR. Early enteral administration of a formula (Impact) supplemented with arginine, nucleotides, and fish oil in intensive care unit patients: results of a multicenter, prospective, randomized, clinical trial. Crit Care Med. 1995 mzo.;23(3):436-9.
dc.relationKudsk KA, Minard G, Croce MA, Brown RO, Lowrey TS, Pritchard FE, Dickerson RN, Fabian TC. A randomized trial of isonitrogenous enteral diets after severe trauma. An immune-enhancing diet reduces septic complications. Ann Surg. 1996 oct.;224(4):531-40.
dc.relationSaffle JR, Wiebke G, Jennings K. Randomized trial of immune-enhancing enteral nutrition in burn patients. Journal of Trauma. 1997;42:793-802.
dc.relationWeimann A, Bastian L, Bischoff WE, Grotz M, Hansel M, Lotz J, Trautwein C, Tusch G, Schlitt HJ, Regel G. Influence of arginine, omega-3 fatty acids and nucleotide-supplemented enteral support on systemic inflammatory response syndrome and July 20th 2009 multiple organ failure in patients after severe trauma. Nutrition. 1998 febr.;14.
dc.relationAtkinson S, Sieffert E, Bihari D. A prospective, randomized, double-blind, controlled clinical trial of enteral immunonutrition in the critically ill. Guy's Hospital Intensive Care Group. Crit Care Med. 1998 jul.;26(7):1164-72.
dc.relationPearce CB, Sadek SA, Walters AM, Goggin PM, Somers SS, Toh SK, Johns T, Duncan HD. A double-blind, randomised, controlled trial to study the effects of an enteral feed supplemented with glutamine, arginine, and omega-3 fatty acid in predicted acute severe pancreatitis. JOP. 2006;7:361-71.
dc.relationCaparros T, Lopez J, Grau T. Early enteral nutrition in critically ill patients with a high-protein diet enriched with arginine, fiber, and antioxidants compared with a standard high-protein diet. The effect on nosocomial infections and outcome. J Parenter Enteral Nutr. 2001 nov.-dic.;25(6):299-308.
dc.relationConejero R, Bonet A, Grau T, Esteban A, Mesejo A, Montejo JC, Lopez J, Acosta JA. Effect of a glutamine-enriched enteral diet on intestinal permeability and infectious morbidity at 28 days in critically ill patients with systemic inflammatory response syndrome: a randomized, single-blind, prospective, multicenter study. Nutrition. 2002 sept.;18(9):716-21.
dc.relationDent D, Heyland DK. Increased mortality in patients with pneumonia receiving an immune-enhancing diet. Crit Care Med. 2003.
dc.relationBertolini G, Iapichino G, Radrizzani D, Facchini R, Simini B, Bruzzone P, Zanforlin G, Tognoni G. Early enteral immunonutrition in patients with severe sepsis: results of an interim analysis of a randomized multicentre clinical trial. Intensive Care Med. 2003 my.;29(5):834-40.
dc.relationKieft H, Roos A, Bindels A. Clinical outcome of an immune enhancing diet in a heterogenous intensive care population. Intensive Care Medicine. 2005; 31:524.
dc.relationTsuei BJ, Bernard AC, Barksdale AR, Rockich AK, Meier CF, Kearney PA. Supplemental enteral arginine is metabolized to ornithine in injured patients. J Surg Res. 2005 ene.;123(1):17-24.
dc.relationWibbenmeyer LA, Mitchell MA, Newel IM, Faucher LD, Amelon MJ, Ruffin TO, Lewis RD. Effect of a fish oil and arginine-fortified diet in thermally injured patients. J Burn Care Res. 2006 sept.-oct;27(5):694-702.
dc.relationBrown RO, Hunt H, Mowatt-Larssen CA, Wojtysiak SL, Henningfield MF, Kudsk KA. Comparison of specialized and standard enteral formulas in trauma patients. Pharmacotherapy. 1994 my.-jun;14(3):314-20.
dc.relationBeale RJ, Sherry T, Lei K, Campbell-Stephen L, McCook J, Smith J, Venetz W, Alteheld B, Stehle P, Schneider H. Early enteral supplementation with key pharmaconutrients improves Sequential Organ Failure Assessment score in critically ill patients with sepsis: outcome of a randomized, controlled, double-blind trial. Crit Care Med. 2008;36(1):131-44.
dc.relationKuhls DA, Rathmacher JA, Musngi MD, Frisch DA, Nielson J, Barber A, MacIntyre AD, Coates JE, Fildes JJ. Beta-hydroxy-beta-methylbutyrate supplementation in critically ill trauma patients. J Trauma. 2007 ene.;62(1):125-31; discusión 131-2.
dc.relationKhorana J, Rerkasem K, Apichartpiyakul C, Sakonwasun C, Watcharasakslip W, Waniyapong T, Norasethtada T, Jittawatanarak K. Immunonutrition and cytokine response in patients with head injury. J Med Assoc Thai. 2009 febr.;92(2):188-94.
dc.relationMendez C, Jurkovich GJ, Garcia I, Davis D, Parker A, Maier RV. Effects of an immune- enhancing diet in critically injured patients. J Trauma. 1997 my.;42(5):933-40.
dc.relationEngel JM, Menges T, Neuhauser C, Schaefer B, Hempelmann G. Effects of various feeding regimens in multiple trauma patients on septic complications and immune parameters. Anasthesiol Intensivmed Notfallmed Schmerzther. 1997 abr.;32(4):234-9. Alemán.
dc.relationMoore FA, Moore EE, Kudsk KA, Brown RO, Bower RH, Koruda MJ, Baker CC, Barbul A. Clinical benefits of an immune-enhancing diet for early postinjury enteral feeding. J Trauma. 1994 oct.;37(4):607-15.
dc.relationGalban C, Montejo JC, Mesejo A, Marco P, Celaya S, Sanchez-Segura JM, Farre M, Bryg DJ. An immune-enhancing enteral diet reduces mortality rate and episodes of bacteremia in septic intensive care unit patients. Crit Care Med. 2000 mzo.;28(3):643-8.
dc.relationRodrigo MP, Garcia JM. [The effect of the composition of the enteral nutrition on infection in the critical patient]. Nutr Hosp. 1997 mzo.-abr.;12(2):80-4. Español.
dc.relationChuntrasakul C, Siltham S, Sarasombath S, Sittapairochana C, Leowattana W, Chockvivatanavanit S, Bunnak A. Comparison of a immunonutrition formula enriched arginine, glutamine and omega-3 fatty acid, with a currently high-enriched enteral nutrition for trauma patients. J Med Assoc Thai. 2003 jun.;86(6):552-61.
dc.relationGadek JE, DeMichele SJ, Karlstad MD. Effect of enteral feeding with eicosapentaenoic acid, gamma-linolenic acid, and antioxidants in patients with acute respiratory distress syndrome. Critical Care Medicine. 1999;27:1409-20.
dc.relationSinger P, Theilla M, Fisher H, Gibstein L, Grozovski E, Cohen J. Benefit of an enteral diet enriched with eicosapentaenoic acid and gamma-linolenic acid in ventilated patients with acute lung injury. Crit Care Med. 2006 abr.;34(4):1033-8.
dc.relationPontes-Arruda A, Aragao AM, Albuquerque JD. Effects of enteral feeding with eicosapentaenoic acid, gamma-linolenic acid, and antioxidants in mechanically ventilated patients with severe sepsis and septic shock. Crit Care Med. 2006 sept.;34(9):2325-33.
dc.relationRice TW, Wheeler AP, Thompson BT, deBoisblanc BP, Steingrub J, Rock P. Enteral omega-3 fatty acid, gamma-linolenic acid, and antioxidant supplementation in acute lung injury. JAMA. 2011;306(14):1574-81.
dc.relationGrau-Carmona T, Moran-Garcia V, Garcia-de-Lorenzo A, Heras-de-la-Calle G, Quesada-Bellver B, Lopez-Martinez J. Effect of an enteral diet enriched with eicosapentaenoic acid, gamma-linolenic acid and anti-oxidants on the outcome of mechanically ventilated, critically ill, septic patients. Clin Nutr. 2011;30(5):578-84.
dc.relationElamin M, Hughes L, Drew D. Effect of enteral nutrition with Eicosapentaenoic Acid (EPA), Gamma-Linolenic Acid (GLA), and antioxidants reduces alveolar inflammatory mediators and protein influx in patients with Acute Respiratory Distress Syndrome (ARDS). Chest. 2005;128(supl.):225 S (resumen).
dc.relationKagan I, Cohen J, Stein M, Bendavid I, Pinsker D, Silva V, Theilla M, Anbar R, Lev S, Grinev M, Singer P. Preemptive enteral nutrition enriched with eicosapentaenoic acid, gamma-linolenic acid and antioxidants in severe multiple trauma: a prospective, randomized, double-blind study. Intensive Care Med. 2015 mzo.;41(3):460-9.
dc.relationHoudijk AP, Rijnsburger ER, Jansen J, Wesdorp RI, Weiss JK, McCamish MA, Teerlink T, Meuwissen SG, Haarman HJ, Thijs LG, Van Leeuwen PA. Randomised trial of glutamine-enriched enteral nutrition on infectious morbidity in patients with multiple trauma. Lancet. 1998 sept. 5;352(9130):772--6.
dc.relationJones C, Palmer TE, Griffiths RD. Randomized clinical outcome study of critically ill patients given glutamine-supplemented enteral nutrition. Nutrition. 1999 febr.;15(2):108-15.
dc.relationBrantley S, Pierce J. Effects of enteral glutamine on trauma patients. Nutrition in Clinical Practice. 2000;15,S13.
dc.relationGarrel D, Patenaude J, Nedelec B, Samson L, Dorais J, Champoux J, D’Elia M, Bernier J. Decreased mortality and infectious morbidity in adult burn patients given enteral glutamine supplements: a prospective, controlled, randomized clinical trial. Crit Care Med. 2003 oct.;31(10):2444-9.
dc.relationZhou YP, Jiang ZM, Sun YH, Wang XR, Ma EL, Wilmore D. The effect of supplemental enteral glutamine on plasma levels, gut function, and outcome in severe burns: a randomized, double-blind, controlled clinical trial. JPEN. J Parenter Enteral Nutr. 2003 jul.-ag.;27(4):241-5.
dc.relationLuo M, Bazargan N, Griffith DP, Estivariz CF Metabolic effects of enteral versus parenteral alanyl-glutamine dipeptide administration in critically ill patients receiving enteral feeding: a pilot study. Clin Nutr 2008;27(2):297-306.
dc.relationMcQuiggan M, Kozar R. Enteral glutamine during active shock resuscitation is safe and enhances tolerance of enteral feeding. J Parenter Enteral Nutr. 2008;32(1):28-35.
dc.relationVan Zanten AR, Sztark F, Kaisers UX, Zielmann S, Felbinger TW, Sablotzki AR, et al. Highprotein enteral nutrition enriched with immune-modulating nutrients vs standard high-protein enteral nutrition and nosocomial infections in the ICU: a randomized clinical trial. JAMA. 2014 ag. 6;312(5):514-24.
dc.relationPattanshetti VM, Powar RS, Godhi AS, Metgud SC. Enteral glutamine supplementation reducing infectious morbidity in burns patients: a randomized controlled trial. Indian J Surg. 2009 ag.;71(4):193-7.
dc.relationHall JC, Dobb G, Hall J, De Sousa R, Brennan L, McCauley R. A prospective randomized trial of enteral glutamine in critical illness. Intensive Care Med. 2003 oct.;29(10):1710-6.
dc.relationPeng X, Yan H, You Z, Wang P, Wang S. Effects of enteral supplementation with glutamine granules on intestinal mucosal barrier function in severe burned patients. Burns. 2004 mzo.;30(2):135-9.
dc.relationJones C, Palmer TE, Griffiths RD. Randomized clinical outcome study of critically ill patients given glutamine-supplemented enteral nutrition. Nutrition. 1999 febr.;15(2):108-15.
dc.relationKoksal GM, Erbabacan E, Tunali Y, Karaoren G, Vehid S, Oz H. The effects of intravenous, enteral and combined administration of glutamine on malnutrition in sepsis: a randomized clinical trial. Asia Pac J Clin Nutr. 2014;23(1):34-40.
dc.relationDe Bandt JP, Coudray-Lucas C, Lioret N, Lim SK, Saizy R, Giboudeau J, Cynober L. A randomized controlled trial of the influence of the mode of enteral ornithine alpha-ketoglutarate administration in burn patients. J Nutr. 1998 mzo.;128(3):563-9.
dc.relationDonati L, Ziegler F, Pongelli G, Signorini MS. Nutritional and clinical efficacy of ornithine alpha-ketoglutarate in severe burn patients. Clin Nutr. 1999 oct.;18(5):307-11.
dc.relationCoudray-Lucas C, Le Bever H, Cynober L, De Bandt JP, Carsin H. Ornithine alpha- ketoglutarate improves wound healing in severe burn patients: a prospective randomized double-blind trial versus isonitrogenous controls. Crit Care Med. 2000 jun.;28(6):1772-6.
dc.relationVan den Berg B, Bogaard JM, Hop WC. High fat, low carbohydrate, enteral feeding in patients weaning from the ventilator. Intensive Care Med. 1994 ag.;20(7):470-5.
dc.relationAl Saady NM, Blackmore CM, Bennett ED. High fat, low carbohydrate, enteral feeding lowers PaCO2 and reduces the period of ventilation in artificially ventilated patients. Intensive Care Med. 1989;15:290-5.B.
dc.relationClifton GL, Robertson CS, Contant CF. Enteral hyperalimentation in head injury. J Neurosurgery. 1985;62:186-93.
dc.relationScheinkestel CD, Kar L, Marshall K, Bailey M, Davies A, Nyulasi I & Tuxen DV. Prospective randomized trial to assess caloric and protein needs of critically ill, anuric, ventilated patients requiring continuous renal replacement therapy. Nutrition. 2003;19(11-12):909-16.
dc.relationRugeles SJ, Rueda JD, Díaz CE, Rosselli D. Hyperproteic hypocaloric enteral nutrition in the critically ill patient: a randomized controlled clinical trial. Indian J Crit Care Med. 2013 nov.;17(6):343-9.
dc.relationHart GK, Dobb GJ. Effect of a fecal bulking agent on diarrhea during enteral feeding in the critically ill. J Parenter Enteral Nutr. 1988;12(5):465-8.
dc.relationDobb GJ, Towler SC. Diarrhoea during enteral feeding in the critically ill: a comparison of feeds with and without fibre. Intensive Care Med. 1990;16(4):252-5.
dc.relationHeather DJ, Howell L, Montana M, Howell M, Hill R. Effect of a bulk-forming cathartic on diarrhea in tube-fed patients. Heart Lung. 1991;20(4):409-13.
dc.relationSchultz AA, Ashby-Hughes B, Taylor R, Gillis DE, Wilkins M. Effects of pectin on diarrhea in critically ill tube-fed patients receiving antibiotics. Am J Crit Care. 2000;9(6):403-11.
dc.relationSpapen H, Diltoer M, Van Malderen C, Opdenacker G, Suys E, Huyghens L. Soluble fiber reduces the incidence of diarrhea in septic patients receiving total enteral nutrition: a prospective, double-blind, randomized, and controlled trial. Clin Nutr. 2001;20(4):301-5.
dc.relationRushdi TA, Pichard C, Khater YH. Control of diarrhea by fiber-enriched diet in ICU patients on enteral nutrition: a prospective randomized controlled trial. Clin Nutr. 2004;23(6):1344-52.
dc.relationChittawatanarat K, Pokawinpudisnun P, Polbhakdee Y. Mixed fibers diet in surgical ICU septic patients. Asia Pacific Journal of Clinical Nutrition. 2010;19(4):458-64.
dc.relationKarakan T, Ergun M, Dogan I, Cindoruk M, Unal S. Comparison of early enteral nutrition in severe acute pancreatitis with prebiotic fiber supplementation versus standard enteral solution: a prospective randomized double-blind study. World Journal of Gastroenterology: WJG. 2007;13(19):2733-7.
dc.relationMajid HA, Cole J, Emery PW, Whelan K. Additional oligofructose/inulin does not increase faecal bifidobacteria in critically ill patients receiving enteral nutrition: a randomised controlled trial. Clin Nutr. 2013 nov. 16.
dc.relationPinilla JC, Samphire J, Arnold C, Liu L, Thiessen B. Comparison of gastrointestinal tolerance to two enteral feeding protocols in critically ill patients: a prospective, randomized controlled trial JPEN. 2001 mzo.-abr.;25(2):81-6.
dc.relationMartin CM, Doig GS, Heyland DK, Morrison T, Sibbald WJ. Southwestern Ontario Critical Care Research Network. Multicentre, cluster-randomized clinical trial of algorithms for critical-care enteral and parenteral therapy (ACCEPT). CMAJ. 2004 ene. 20; 170(2):197-204.
dc.relationMacLaren R, Kiser TH, Fish DN, Wischmeyer PE. Erythromycin vs metoclopramide for facilitating gastric emptying and tolerance to intragastric nutrition in critically ill patients. JPEN. 2008;32(4):412-19.
dc.relationMontecalvo MA, Steger KA, Farber HW. Nutritional outcome and pneumonia in critical care patients randomized to gastric versus jejunal tube feedings. The Critical Care Research Team. Crit Care Med. 1992;20:1377-87.
dc.relationKortbeek JB, Haigh PI, Doig C. Duodenal versus gastric feeding in ventilated blunt trauma patients: a randomized controlled trial. J Trauma. 1999;46:992-6.
dc.relationTaylor SJ, Fettes SB, Jewkes C, Nelson RJ. Prospective, randomized, controlled trial to determine the effect of early enhanced enteral nutrition on clinical outcome in mechanically ventilated patients suffering head injury. Crit Care Med. 1999;27:2525-31.
dc.relationKearns LJ, Chin D, Mueller L, Wallace K, Jensen WA, Kirsch CM. The incidence of ventilator-associated pneumonia and success in nutrient delivery with gastric versus small intestinal feeding: a randomized clinical trial. Crit Care Med. 2000;28:1742-6.
dc.relationMinard G, Kudsk KA, Melton S, Patton JH, Tolley EA. Early versus delayed feeding with an immune-enhancing diet in patients with severe head injuries. JPEN. 2000;24:145-9.
dc.relationBoivin MA, Levy H. Gastric feeding with erythromycin is equivalent to transpyloric feeding in the critically ill. Crit Care Med. 2001;29(10):1916-9.
dc.relationDay L, Stotts NA, Frankfurt A, Stralovich-Romani A, Volz M, Muwaswes M, et al. Gastric versus duodenal feeding in patients with neurological disease: a pilot study. J Neurosci Nurs. 2001 jun.;33(3):148-9, 155-9.
dc.relationEsparza J, Boivin MA, Hartshorne MF, Levy H. Equal aspiration rates in gastrically and transpylorically fed critically ill patients. Intensive Care Med. 2001;27:660-4.
dc.relationDavies AR, Froomes PR, French CJ, Bellomo R, Gutteridge GA, Nyulasi L, et al. Randomized comparison of nasojejunal and nasogastric feeding in critically ill patients. Crit Care Med. 2002;30(3):586-90.
dc.relationMontejo JC, Grau T, Acosta J. Multicenter, prospective, randomized, single-blind study comparing the efficacy and gastrointestinal complications of early jejunal feeding with early gastric feeding in critically ill patients. Crit Care Med. 2002;30:796-800.
dc.relationNeumann DA, DeLegge MH. Gastric versus small-bowel tube feeding in the intensive care unit: a prospective comparison of efficacy. Crit Care Med. 2002 jul.;30(7):1436-8.
dc.relationHsu CW, Sun SF, Lin SL, Kang SP, Chu KA, Lin CH. Duodenal versus gastric feeding in medical intensive care unit patients: a prospective, randomized, clinical study. Crit Care Med. 2009;37(6):1866-72.
dc.relationWhite H, Sosnowski K, Tran K, Reeves A, Jones M. A randomised controlled comparison of early postpyloric versus early gastric feeding to meet nutritional targets in ventilated intensive care patients. Crit Care. 2009;13(6):R187.
dc.relationAcosta-Escribano J, Fernandez-Vivas M, Grau Carmona T, Caturla-Such J, Garcia-Martinez M, Menendez-Mainer A. Gastric versus transpyloric feeding in severe traumatic brain injury: a prospective, randomized trial. Intensive Care Medicine. 2010;36(9):1532-9.
dc.relationDavies AR, Morrison SS, Bailey MJ, Bellomo R, Cooper DJ, Doig GS, et al. A multicenter, randomized controlled trial comparing early nasojejunal with nasogastric nutrition in critical illness. Crit Care Med. 2012;40(8):2342-8.
dc.relationFriedman G, Flávia Couto CL, Becker M. Randomized study to compare nasojejunal with nasogastric nutrition in critically ill patients without prior evidence of altered gastric emptying. Indian J Crit Care Med. 2015 febr;19(2):71-5.
dc.relationDesai SV, McClave SA and Rice TW. Nutrition in the ICU: an evidence-based approach. Chest. 2014;145:1148-57.
dc.relationHeyland DK. Parenteral nutrition in the critically-ill patient: more harm than good? Proc Nutr Soc. 2000 ag.;59(3):457-66.
dc.relationVan Way CW 3rd, Moore EE, Allo M, Solomons C, Gordon S, Jones T. Comparison of total parenteral nutrition with 25 per cent and 45 per cent branched chain amino acids in stressed patients. Am Surg. 1985 nov.;51(11):609-16.
dc.relationOtt LG, Schmidt JJ, Young AB, Twyman DL, Rapp RP, Tibbs PA, et al. Comparison of administration of two standard intravenous amino acid formulas to severely brain-injured patients. Drug Intell Clin Pharm. 1988 oct.;22(10):763-8.
dc.relationKuhl DA, Brown RO, Vehe KL, Boucher BA, Luther RW, Kudsk KA. Use of selected visceral protein measurements in the comparison of branched-chain amino acids with standard amino acids in parenteral nutrition support of injured patients. Surgery. 1990 my.;107(5):503-10.
dc.relationVon Meyenfeldt MF, Soeters PB, Vente JP, Van Berlo CL, Rouflart MM, De Jong KP, et al. Effect of branched chain amino acid enrichment of total parenteral nutrition on nitrogen sparing and clinical outcome of sepsis and trauma: a prospective randomized double blind trial. Br J Surg. 1990 ag.;77(8):924-9.
dc.relationVente JP, Soeters PB, Von Meyenfeldt MF, Rouflart MM, Van der Linden CJ, Gouma DJ. Prospective randomized double-blind trial of branched chain amino acid enriched versus standard parenteral nutrition solutions in traumatized and septic patients. World J Surg. 1991 ene.-febr.;15(1):128-32; discusión 133.
dc.relationGarcia-de-Lorenzo A, Ortiz-Leyba C, Planas M, Montejo JC, Nunez R, OrdonezFJ, et al. Parenteral administration of different amounts of branch-chain amino acids in septic patients: clinical and metabolic aspects. Crit Care Med. 1997 mzo.;25(3):418-24.
dc.relationOzgultekin A, Turan G, Durmus Y, Dincer E, Akgun N. Comparison of the efficacy of parenteral glutamine and branched-chain amino acid solutions given as extra supplements in parallel to the enteral nutrition in head trauma. e-SPEN 2008;3(5):e211–6.
dc.relationNijveldt RJ, Tan AM, Prins HA, de Jong D, van Rij GL, Wesdorp RI, van Leeuwen PA. Use of a mixture of medium-chain triglycerides and longchain triglycerides versus long-chain triglycerides in critically ill surgical patients: a randomized prospective double-blind study. Clin Nutr. 1998 febr.;17(1):23-9.
dc.relationGarnacho-Montero J, Ortiz-Leyba C, Jiménez-Jiménez FJ, Garcia-Garmendia JL, Jiménez- Jiménez LM, Garnacho-Montero MC, Barrero-Almodóvar A. Clinical and metabolic effects of two lipid emulsions on the parenteral nutrition of septic patients. Nutrition. 2002 febr.;18(2):134-8.
dc.relationIovinelli G, Marinangeli F, Ciccone A, Ciccozzi A, Leonardis M, Paladini A, Varrassi G. Parenteral nutrition in ventilated patients with chronic obstructive pulmonary disease: long chain vs medium chain triglycerides. Minerva Anestesiol. 2007 ene.-febr.;73(1-2):65-76.
dc.relationHall TC, Bilku DK, Al-Leswas D, Neal CP, Horst C, Cooke J, Metcalfe MS, Dennison AR. A randomized controlled trial investigating the effects of parenteral fish oil on survival outcomes in critically ill patients with sepsis: a pilot study. J Parenter Enteral Nutr. . 2014 ene 9. [Versión electrónica en proceso de publicación].
dc.relationBurkhart CS, Dell-Kuster S, Siegemund M, Pargger H, Marsch S, Strebel SP, Steiner LA. Effect of n-3 fatty acids on markers of brain injury and incidence of sepsis-associated delirium in septic patients. Acta Anaesthesiol Scand. 2014 mzo. 24.
dc.relationGultekin G, Sahin H, Inanc N, Uyanik F, Ok E. Impact of Omega-3 and Omega-9 fatty acids enriched total parenteral nutrition on blood chemistry and inflammatory markers in septic patients. Pak J Med Sci. 2014 mzo.;30(2):299-304.
dc.relationGrau-Carmona T, Bonet-Saris A, García-de-Lorenzo A, Sánchez-Alvarez C, Rodríguez-Pozo A, Acosta-Escribano J, et al. Influence of n-3 polyunsaturated fatty acids enriched lipid emulsions on nosocomial infections and clinical outcomes in critically ill patients: ICU Lipids Study. Crit Care Med. 2014 sept. 15.
dc.relationYoung B, Ott L, Kasarskis E, Rapp R, Moles K, Dempsey RJ, et al. Zinc supplementation is associated with improved neurologic recovery rate and visceral protein levels of patients with severe closed head injury. J Neurotrauma. 1996;13:25-34.
dc.relationBerger MM, Spertini F, Shenkin A, Wardle C, Wiesner L, Schindler C, Chioléro RL Trace element supplementation modulates pulmonary infection rates after major burns: a double-blind, placebo-controlled trial. Am J Clin Nutr. 1998;68:365-71.
dc.relationBerger MM, Reymond MJ, Shenkin A, Rey F, Wardle C, Cayeux C, et al. Influence of selenium supplements on the post-traumatic alterations of the thyroid axis: a placebo-controlled trial. Intensive Care Med. 2001 ene.;27(1):91-100.
dc.relationBerger MM, Baines M, Chiolero R, Wardle C, Cayeux, Shenkin A. Influence of early trace element and vitamin E supplements on antioxidant status after major trauma: a controlled trial. N. Research. 2001;21:41-54.
dc.relationGriffiths RD, Jones C, Palmer TE. Six-month outcome of critically ill patients given glutamine-supplemented parenteral nutrition. Nutrition. 1997 abr.;13(4):295-302.
dc.relationPowell-Tuck J, Jamieson CP, Bettany GE, Obeid O, Fawcett HV, Archer C, Murphy DL. A double blind, randomised, controlled trial of glutamine supplementation in parenteral nutrition. Gut. 1999 jul.;45(1):82-8.
dc.relationWischmeyer PE, Lynch J, Liedel J, Wolfson R, Riehm J, Gottlieb L, Kahana M. Glutamine administration reduces Gram-negative bacteremia in severely burned patients: a prospective, randomized, double-blind trial versus isonitrogenous control. Crit Care Med. 2001 nov.;29(11):2075-80.
dc.relationGoeters C, Wenn A, Mertes N, Wempe C, Van Aken H, Stehle P, Bone HG. Parenteral L-alanyl-L-glutamine improves 6-month outcome in critically ill patients. Crit Care Med. 2002 sept.;30(9):2032-7.
dc.relationGriffiths RD, Allen KD, Andrews FJ, Jones C. Infection, multiple organ failure, and survival in the intensive care unit: influence of glutamine-supplemented parenteral nutrition on acquired infection. Nutrition. 2002 jul.-ag.;18(7-8):546-52.
dc.relationFuentes-Orozco C, Anaya-Prado R, González-Ojeda A, Arenas-Márquez H, Cabrera- Pivaral C, Cervantes-Guevara G, Barrera-Zepeda LM. L-alanyl-L-glutamine-supplemented parenteral nutrition improves infectious morbidity in secondary peritonitis. Clin Nutr. 2004 febr.;23(1):13-21.
dc.relationXian-Li He. Effect of total parenteral nutrition (TPN) with and without glutamine dipeptide supplementation on outcome in severe acute pancreatitis (SAP). Clinical Nutrition Supplements. 2004;(1):43.
dc.relationBarbosa N, Sánchez CE, Patiño E. Cuestionario de actividad física-QAPACE. Disponible en: http://qapace.org/encuesta/index.php.
dc.relationDuvallet A. Utilisation de grilles d’activités: méthode, indications et limites. Simulation en laboratoire de séquences d’activités physiques. En: Monod H, editor. Nutrition et sport. París: Masson; 1990. p. 9-17.
dc.relationWilmore JH, Costill, DL editores. Physiology du Sport et de L’Exercice. París: DeBoeck Université; 2002. p. 736.
dc.relationHalsey LG, Shepard E, Wilson RP. Assessing the development and application of the accelerometry technique for estimating energy expenditure. Comparative Biochemistry and Physiology. 2011 mzo.;158(3):305-14.
dc.relationShepard R, Aoyagi Y. Measurement of human energy expenditure, with particular reference to field studies: an historical perspective. European Journal of Applied Physiology. 2012 ag.;112(8):2785-815.
dc.relationPerkins JF. Historical development of respiratory physiology. En: Fenn WO, Rahnand H, editores. Handbook of physiology. Sec. 3. Respiration. Vol. 1. Washington, DC: American Physiological Society; 1964.
dc.relationFenn WO, Rahn H., editores. Handbook of physiology. Sec. 3. Respiration. Vol. 1. Washington, DC: American Physiological Society; 1964.
dc.relationZuntz N, Hagemann O. Unters chungen ber den Stroffwechsel des Peferdes bei Rube und Arbeit. Berlín: Parey; 1898. p. 438.
dc.relationAtwater WO, Benedict FG. Experiments on the metabolism of matter and energy in the human body, 1900-1902. U.S. Department of Agriculture Office of Experiment Stations: Bulletin 136. Washington, D.C: U.S. Government Printing Office; 1903.
dc.relationPearl R. Studies in human biology. Chap. 11. Baltimore: Williams & Wikins; 1924.
dc.relationBedale EM. Energy expenditure and food requirements of children at school. Proc R Soc. 1923;94:368-404.
dc.relationLehmann G. Praktische Arbeitsphysiologie. Suttgar: Thiem; 1953.
dc.relationEdholm OG, Fletcher JG, Widdowson EM, Mccance RA. The energy expenditure and food intake of individual men. Brit. J. Nutr. 1955;9:286-300.
dc.relationWeb P. The measurement of energy exchange in man: An analysis. American Journal of Clinical Nutrition. 1980;33:1299-310.
dc.relationAcheson KJ, Campbell IT, Edholm OG, Liller DS, Stocj MJ. The measurement of daily energy expenditure. An evaluation of some techniques. Am. J. Clin. Nutr. 1980;33,1155-64.
dc.relationBarbosa N. Quantification par questionnaire de l'Activite physique Chez les Enfants Colombiens (QAPACE): Enquête Chez les Enfants Scolarises de Bogotá. Sciences du Vivant [q-bio] [Thèse]. Universite Paris Sud, París XI; 2015.
dc.relationBarbosa N, Patiño E. Cuestionario Internacional de Actividad Física-IPAQ. Disponible en: http://qapace.org/ipaql/indexgral.php.
dc.relationMalina RM, Bouchard C. Growth maturation and physical activity. Champaign: Human Kinetics Books; 1991. p. 501.
dc.relationBar-Or O. The child and adolescent athlete. Enciclopaedia of Sports Medicine. Vol. VI. Oxford: Ed. Blackwell Science, 1996. p. 691.
dc.relationLongmuir PE, Brothers JA, De Ferranti SD, Hayman LL, George F, Van Hare GF, et al. Promotion of physical activity for children and adults with congenital heart disease: a scientific statement from the American Heart Association. Circulation. 2013;127:2147-59.
dc.relationBrooke HL, Corder K, Griffin SJ, Van Sluijs EMF. Physical activity maintenance in the transition to adolescence: a longitudinal study of the roles of sport and lifestyle activities in British youth. Plos One. 2014 febr.;9(2):1-8.
dc.relationBarbosa N, Sanchez CE, Patiño E, Lozano B, Thalabard J-C, Le Bozec S, Rieu M. Quantification of physical activity using the QAPACE Questionnaire: a two stage cluster simple design survey of children and adolescents attending urban school. The Journal of Sports Medicine and Physical Fitness. 2016 my;56(5):587-96.
dc.relationMederith-Johns K, Williams Sh, Galland B, Kennedy G, Taylor R. 24 h accelerometry: impact of sleep-screening methods on estimates of sedentary behaviour and physical activity while awake. Journal of Sports Sciences. 2016;34(7):679-85.
dc.relationRao P, Phan K, Maharaj MM, Pelletier MH, Walsh WR, Mobbs RJ. Accelerometers for objective evaluation of physical activity following spine surgery. Journal of Clinical Neuroscience. 2016 abr.;26:14-18.
dc.relationKobel S, Kettner S, Lämmle C, Steinacker JM. Physical activity of German children during different segments of the school day. J Public Health (2017);25:29-35.
dc.relationSkender S, Ose J, Claude J Ch, Paskow M, Brühmann B, Siegel EM, et al. Accelerometry and physical activity questionnaires, a systematic review. BMC Public Health. 2016;16:515.
dc.relationSangster J, Furber S, Phongsavan P, Redfern J, Mark A, Bauman A. Effects of a pedometer-based telephone coaching intervention on physical activity among people with cardiac disease in urban, rural and semi-rural settings: a replication Study. Heart, Lung and Circulation. 2016 jul.;16(515):1-10.
dc.relationVerwey R, Van der Weegen S, Spreeuwenberg M, Tange CH, Van der Weijden T, De Witte L. Process evaluation of physical activity counselling with and without the use of mobile technology: a mixed methods study. International Journal of Nursing Studies. 2016;53:3-16.
dc.relationLee NC, Voss Ch, Frazer AD, Hirsch JA, Heather A, McKay HA, Winters M. Does activity space size influence physical activity levels of adolescents?—A GPS study of an urban environment. Preventive Medicine Reports. 2016;3:75-8.
dc.relationMurakami H, Kawakami R, Nakae S, Nakata Y, Ishikawa-Takata K, Tanaka S, Miyachi M. Accuracy of wearable devices for estimating total energy expenditurecomparison with metabolic chamber and doubly labeled water method. JAMA Intern Med. 2016; 176(5):702-03.
dc.relationBar-Or O. Physical activity and health in children and adolescents [Internet]. CSEP, Canada Guidelines; 1999. p. 7. Disponible en: www.csep.ca/cmfiles/PAMGpdfs/background_papers_3_full.pdf
dc.relationSallis JF, Bruce G, Simons-Morton BG, Stone EJ, Corbin CB, et al. Determinants of physical activity and interventions in youth. Med. Sci. Sports Exerc. 1992;24(supl. 6):S248-S257.
dc.relationSánchez CE. Factores que influyen en la adherencia a la actividad física en la población deportiva de Bogotá DC. Estudio preliminar [Tesis]. Universidad El Bosque; 2003.
dc.relationMarkus BH. Exercise behaviour and strategies for intervention. Res Quart Exerc Sport. 1995;66:319-23.
dc.relationRavussin E, Bogardus, C. A brief overview of human energy metabolism and diets relationship to essential obesity. Am J. Clin. Nutr. 1992;55(supl. 1):242S-245S.
dc.relationRavussin E, Rising R. Daily Energy Expenditure in humans: measurements in a respiratory chamber and by doubly labelled water. En: Kinney JM, Tucker HN, editores. Energy metabolism: tissue determinants and cellular corollaries. Nueva York: Raven Press; 1992.
dc.relationFAO/WHO/OMS/UNU. Expert Consultation Report. Energy and Protein Requirements [Internet]. Technical Report Series 724. Ch. 6, Ginebra: WHO/OMS; 1985. Disponible en: http://www.fao.org/docrep/003/AA040E/AA040E06.htm#ch6
dc.relationMellerowicz H. Ergometría. 3.a ed. Buenos Aires: Médica Panamericana; 1984. p. 274.
dc.relationWillmore JH, Costill DL. Fisiología del esfuerzo y del deporte. 5.ª ed. Barcelona: Paidotribo; 2007. p. 129-44.
dc.relationMonod H, Flandrois R. Physiologie du sport. 4.a ed. París: Masson; 1997. p. 2.
dc.relationFAO/WHO/UN. Report of Expert Consultation. En: Human Energy Requirement. Roma; 2001. p. 22.
dc.relationZamora JD, Laclé A. Evaluación del gasto energético y actividad física en escolares eutróficos, con sobrepeso u obesidad. Rev Chil Pediatr. 2012;83(2):137.
dc.relationPatiño JF. Determinación del gasto energético en el paciente quirúrgico. En: Metabolismo, nutrición y schock. Bogotá: Panamericana; 2006. p. 181-93.
dc.relationAlonso M, Redondo MP, Torrecilla J, Castro MJ, Conde F, et al. Dificultades de la estimación del gasto energético en la población infantil. Bol Pediatr. 2006;46:74-108.
dc.relationRieu M et al. Bioenergetique de l’exercice musculaire et de l’entrainement physique. París: PUF; 1988. p. 462.
dc.relationBenito PJ, Álvarez-Sánchez M, Díaz V, Morencos E, Peinado AB, Cupeiro R, Maffulli N. PRONAF Study Group. Cardiovascular fitness and energy expenditure response during a combined aerobic and circuit weight training protocol. PLOS ONE. 2016 nov.:1-14. DOI:10.1371/journal.pone.0164349
dc.relationBiswas A, Oh PI, Faulkner GE, Bonsignore A, Pakosh MT, Alter DA. The energy expenditure benefits of reallocating sedentary time with physical activity: a systematic review and meta-analysis. J Public Health. 2017 jun.:1-9.
dc.relationMahan LK, Escott-Stump S. Dietoterapia de Krause. 12.a ed. Barcelona: Elsevier Masson; 2009. p. 22-37.
dc.relationWickel EE, Eisenmann JC. Within- and betwen individual variability in estimated energy expediture and habitual physical activity among young adults. Eur J of Clin Nutr. 2006;60:538-44.
dc.relationWeineck, J. Entrenamiento total. Barcelona: Paidotribo; 1985. p. 19.
dc.relationMorante JC, Izquierdo, M. Técnica deportiva, modelos técnicos y estilo personal. En Izquierdo M, editor. Biomecánica y bases neuromusculares de la actividad física y el deporte. Madrid: Panamericana; 2008. p. 91-106.
dc.relationStephens T, Craig C. The well-being of Canadians: The 1988 Campbell's survey. Ottawa, ON: Canadian Fitness and Lifestyle Research Institute; 1990.
dc.relationAmerican Heart Association. Physical activity and public health: updated recommendation for adults from the American College of Sports Medicine and the American Heart Association. Circulation. 2007;116(9):1081.
dc.relationLatham MC. Human nutrition in the developing world: Metabolism and Energy. FAO Food and Nutrition Series No. 29. Roma. Part II, chapter 8; 1997. Disponible en: http://www.fao.org/docrep/W0073E/w0073e04.htm#P1722_226394
dc.relationRichalet JP, Herry JP. Médecine de l'alpinisme: Les parmétres atmospheriques. París: Masson; 1990. p. 290.
dc.relationMataix J, Martínez JA. Balance de energía corporal. En: Nutrición y alimentación humana. Barcelona: Océano/Ergon; 2006. p. 703-22.
dc.relationEsteves de Oliveira FC, De Mello Cruz AC, Gonçalves Oliveira C, Rodrigues Ferreira Cruz AC, Mayumi Nakajima V, Bressan J. Gasto energético de adultos brasileños saludables: una comparación de métodos. Nutr Hosp. 2008;23:554-61.
dc.relationKien CL, Ugrasbul, F. (2004). Prediction of daily energy expenditure during a feeding trial using measurements of resting energy expenditure, fat-free mass, or Harris-Benedict equations. The American Journal of Clinical Nutrition. 2004;80(4):876-80.
dc.relationHollmann W, Prinz JP. Ergospirometry and its history. Sports Med. 1997 febr.;23(2):93-105.
dc.relationHerdy AH, Fonteles LE, Stein R, Gil Soares C, Milani M, Romeu Sérgio Meneghelo RS, et al. Cardiopulmonary exercise test: background, applicability and interpretation. Arq Bras Cardiol. 2016 nov.;107(5):467-81.
dc.relationWasserman K, Hansen JE. Principles of exercise testing and interpretation: including pathophysiology and clinical applications. 5.a ed. Philadephia: Lippincott Williams & Wilkins; 2012.
dc.relationPietrobelli A, Fields DA. Energy expenditure and body composition techniques. En: Goran M, Sothern MS. Handbook of pediatric obesity: etiology, pathophysiology, and prevention. Boca Raton: Ed. Taylor & Francis; 2006. p. 102-03.
dc.relationBlasco R. Gasto energético en reposo. Métodos de evaluación y aplicaciones. Rev Esp Nutr Comunitaria. 2015;21(supl. 1):243-51.
dc.relationRoper JA, Stegemöller EL, Tilman MD, Hass CJ. Oxygen consumption, oxygen cost, heart rate, and perceived effort during Split-belt treadmill walking in young healthy adults. European Journal of Applied Physiology. 2013 mzo.;113(3):729-34.
dc.relationKahan D, Mackensie TL. Energy expenditure estimates during school physical education: Potential vs. reality? Preventive Medicine. 2017 febr.;95:82-8.
dc.relationMontoye AHK, Conger SA, Connolly CP, Imboden MT, Nrldon MB, Bock JM. Validation of accelerometer-based energy expenditure prediction models in structured and simulated free-living settings. Journal Measurement in Physical Education and Exercise Science [Internet]. 2017 jun. 22. [Versión electrónica en proceso de publicación].
dc.relationRodríguez J, Terrados N. Métodos para la valoración de la actividad física y el gasto energético en niños y adultos. Archivos de Medicina del Deporte. 2006;23(115):365-77.
dc.relationPereira MA, FitzerGerald SJ, Gregg EW, Joswiak ML, Ryan WJ, Suminski RR, et al. A collection of physical activity questionnaires for health-related research. Med Sci Sports Exerc. 1997 jun;29(supl. 6):S1-205.
dc.relationMartínez-Lemos RI, Ayán C, Sánchez A, Cancela JM, Valcarce R. Cuestionarios de actividad física para niños y adolescentes españoles: una revisión sistemática. Sist. Sanit. Navar. 2016;39(3):417-28.
dc.relationTerwee CB, Mokkink LB, Van Poppel MN, Chinapaw JM, Van Mechelen W, De Vet HCW. Qualitative attributes and measurement properties of physical activity questionnaires. Sports Medicine. 2010;40:525-37.
dc.relationDurnin JV. Activity patterns in the community. Can. Med. Assoc. J. 1967;96:882-86.
dc.relationBouchard C, Tremblay A, Leblanc C, Lortie G, Savard R, Thériault G. A method to assess energy expenditure in children and adults. Am J Clin Nutr. 1983;37:461-67.
dc.relationAndersen KL, Masironi R, Rutenfranz J, Seliger V. Habitual physical activity and health. Copenhagen: Regional Office for Europe; 1978.
dc.relationCollins KJ, Spurr GB. Energy expenditure and habitual activity. En: Collins KJ, ed. Handbook of methods for the measurement of work performance, physical fitness and energy expenditure in tropical populations. París: International Union of Biological Sciences; 1990. p. 81-90.
dc.relationBoisvert P, Washburn RA, Montoye HJ, Leger L. Mesure et évaluation de l’activité physique par questionnaire. Questionnaires utilisés dans la litterature anglo-saxone. Science & Sport. 1998;3:245-62.
dc.relationBaecke JAH, Burema J, Fritters JER. A short questionnaire tor the measurement of habitual physical activity epidemiological studies. Am J Clin Nutr. 1982;36:932-42.
dc.relationPaffenbarger RS Jr, Hyde RT, YWing AL. Physical activity, all-cause mortality, and longevity of college alumni. Am J Epidemiol.1978;108:161-75.
dc.relationPaffenbarger RS Jr, Hyde R, Wing A, Jung D, Kampert J. Influences of changes in physical activity and other characteristics on all-cause mortality. Abstract Med Sc. Sports Exerc. 1991;23:82.
dc.relationChinapaw MJ, Mokkink LB, Van Poppel MN, Van Mechelen W, Terwee. Physical activity questionnaires for youth: a systematic review of measurement properties. Sports Medicine. 2010;40:539-63.
dc.relationFarias Júnior JCD, Lopes ADS, Florindo AA, Hallal, PC. Validity and reliability of self-report instruments for measuring physical activity in adolescents: a systematic review. Cad de Saude Publica. 2010;26:1669-91.
dc.relationAbrams S, Wong W. Stable isotopes in human nutrition. Laboratory methods and research applications. London: CABI Publishing; 2003.
dc.relationWesterterp KR. Doubly labelled water assessment of energy expenditure: principle, practice, and promise. European Journal of Applied Physiology. 2017 jul.;117(7):1277-85.
dc.relationSpurr GB, Prentice AM, Murgatroyd PR, Goldberg GR, Reina JC, Christman NT. Energy expenditure from minute-by-minute heart rate recording: comparison with indirect calorimetry. Am J Clin Nutr. 1988;48:552-9.
dc.relationOrganización Mundial de la Salud. Informe mundial sobre el envejecimiento y la salud: resumen; 2015.
dc.relationAlpers DH, Clouse RE, Stenson WF. Nutrición. 2.a ed. Madrid: Marban; 2013.
dc.relationLey 1251 (27 de noviembre de 2008), por la cual se dictan normas tendientes a procurar la protección, promoción y defensa de los derechos de los adultos mayores. Diario Oficial N.o 47.186.
dc.relationLey 1276 (5 de enero de 2009), a través de la cual se modifica la Ley 687 del 15 de agosto de 2001 y se establecen nuevos criterios de atención integral del adulto mayor en los centros vida. Diario Oficial N.o 47.223.
dc.relationBernstein M, Munoz N. Position of the Academy of Nutrition and Dietetics: food and nutrition for older adults: promoting health and wellness. Journal of the Academy of Nutrition and Dietetics. 2012;112(8):1255-77.
dc.relationBanco Mundial (Internet). Grupo del Banco Mundial 2015. Indicadores de salud. Disponible en: http://datos.bancomundial.org/indicador/SP.POP.TOTL/countries/1W?display=default., 2015.
dc.relationMinisterio de Salud y Protección Social. Envejecimiento demográfico Colombia 1951-2020. Dinámica demográfica y estructuras poblacionales. Bogotá: Imprenta Nacional de Colombia; 2013.
dc.relationDepartamento Administrativo Nacional de Estadística. Demografía y Población. 2015. Disponible en: http://www.dane.gov.co/index.php/poblacion-y-demografia/
dc.relationMinisterio de la Protección Social, Profamilia, Instituto Colombiano de Bienestar Familiar, Instituto Nacional de Salud, DANE, Instituto Colombiano del Deporte, et al. Encuesta Nacional de la Situación Nutricional en Colombia 2010 - ENSIN. Bogotá: ICBF; 2011.
dc.relationDíaz GA, Cárdenas DM, Mesa A. Consistency of Mini Nutritional Assessment to identify sarcopenia in older adults in nursing homes in Bogotá, Colombia. Nutrición Hospitalaria. 2015;32(1):274.
dc.relationPorta M. Dictionary of Epidemiology. 5.a ed. USA: Oxford University Press; 2008.
dc.relationQuintero M. La salud de los adultos mayores: una visión compartida. 5.a ed. Organización Panamericana de la Salud; 2011.
dc.relationGuigoz Y, Lauque S, Vellas BJ. Identifying the elderly at risk for malnutrition. The Mini Nutritional Assessment. Clinics in Geriatric Medicine. 2002;18(4):737-57.
dc.relationVellas B, Guigoz Y, Garry PJ, Nourhashemi F, Bennahum D, Lauque S, et al. The Mini Nutritional Assessment (MNA) and its use in grading the nutritional state of elderly patients. Nutrition 1999;15(2):116-22.
dc.relationGuigoz Y, Vellas B, Garry PJ. Assessing the nutritional status of the elderly: The Mini Nutritional Assessment as part of the geriatric evaluation. Nutrition Reviews. 1996;54(1 Pt 2):S65.
dc.relationKondrup J, Allison SP, Elia M, Vellas B, Plauth M. ESPEN Guidelines for Nutrition Screening 2002. Clinical Nutrition. 2003;22(4):415-21.
dc.relationBauer J. The MNA in 2013 - Still going stronger after almost twenty years. J Nutr Health Aging. 2013;17(4):288-9.
dc.relationGenser D. Food and Drug Interaction: Consequences for the Nutrition/Health Status. Annals of Nutrition and Metabolism. 2008;52(S1):29-32.
dc.relationHeuberger R. Polypharmacy and Food-Drug Interactions among Older Persons: A Review. Journal of Nutrition in Gerontology and Geriatrics. 2012;31(4):325-403.
dc.relationRamos S, Moreno H. Características antropométricas de adultos mayores participantes en competencias deportivas. Perspectivas en Nutrición Humana. 2011;13(1):21-32.
dc.relationSerra L, Aranceta J, Mataix J, Uauy R. Nutrición y salud pública: métodos, bases científicas y aplicaciones. 2.a ed. España, México: Elsevier; 2010.
dc.relationChumlea WC, Roche AF, Steinbaugh ML. Estimating stature from knee height for persons 60 to 90 years of age. Journal of the American Geriatrics Society. 1985;33(2):116-20.
dc.relationLipschitz DA. Screening for nutritional status in the elderly. Primary Care. 1994;21(1):55-67.
dc.relationOrganización Panamericana de la Salud. Guía clínica para atención primaria a las personas adultas mayores. Washington DC: OPS; 2002.
dc.relationOsterkamp LK. Current perspective on assessment of human body proportions of relevance to amputees. Journal of the American Dietetic Association. 1995;95(2):215-18.
dc.relationCruz-Jentoft AJ, Baeyens JP, Bauer JM, Boirie Y, Cederholm T, Landi F, et al. Sarcopenia: european consensus on definition and diagnosis: Report of the European Working Group on Sarcopenia in Older People. Age and Ageing. 2010 jul.;39(4):412-23.
dc.relationMorán LJ, Rivera A, González ME, De Torres ML, Pérez RC, Irles JA. Diet history: Method and applications. Nutrición Hospitalaria. 2015;31(S3):57-61.
dc.relationLadino L, Velázquez O. Nutridatos Manual de nutrición clínica. Colombia: Health Books; 2010.
dc.relationOrtega RM, Pérez-Rodrigo C, López-Sobaler AM. Dietary assessment methods: dietary records. Nutrición Hospitalaria. 2015;31(S3):38-45.
dc.relationSalvador G, Serra-Majem L, Ribas-Barba L. What and how much do we eat? 24-hour dietary recall method. Nutrición Hospitalaria. 2015;31(S3):46-8.
dc.relationPérez RC, Aranceta J, Salvador G, Varela-Moreiras G. Food frequency questionnaires. Nutrición Hospitalaria. 2015;31(S3):49-56.
dc.relationNissensohn M, López-Ufano M, Castro-Quezada I, Serra-Majem L. Assessment of beverage intake and hydration status. Nutrición Hospitalaria. 2015;31(S3):62-9.
dc.relationRiobó P, Sierra R, Soldo J, Gómez-Candela C, García PP, Serra-Majem L. Special considerations for nutritional studies in elderly. Nutrición Hospitalaria. 2015;31(S3):84-90.
dc.relationClapés J, Cervera P, Rigolfas R. Alimentación y dietoterapia. 4.a ed. España: McGraw-Hill; 2004.
dc.relationFielding RA, Vellas B, Evans WJ, Bhasin S, Morley JE, Newman AB, et al. Sarcopenia: An undiagnosed condition in older adults. Current consensus definition: Prevalence, etiology, and consequences. International Working Group on Sarcopenia. Journal of the American Medical Directors Association. 2011;12(4):249-56.
dc.relationWen X, An P, Chen WC, Lv Y, Fu Q. Comparisons of sarcopenia prevalence based on different diagnostic criteria in Chinese older adults. The Journal of Nutrition, Health & Aging. 2015;19(3):342-47.
dc.relationCruz-Jentoft AJ, Landi F, Schneider SM, Zúñiga C, Arai H, Boirie Y, et al. Prevalence of and interventions for sarcopenia in ageing adults: a systematic review. Report of the International Sarcopenia Initiative (EWGSOP and IWGS). Age and Ageing. 2014 nov.;43(6):748-59.
dc.relationBastiaanse LP, Hilgenkamp TIM, Echteld MA, Evenhuis HM. Prevalence and associated factors of sarcopenia in older adults with intellectual disabilities. Research in Developmental Disabilities. 2012;33(6):2004-12.
dc.relationTanimoto Y, Watanabe M, Sun W, Sugiura Y, Tsuda Y, Kimura M, et al. Association between sarcopenia and higher-level functional capacity in daily living in community-dwelling elderly subjects in Japan. Archives of Gerontology and Geriatrics. 2012;55(2):e13.
dc.relationVerschueren S, Gielen E, O’Neill T, Pye S, Adams J, Ward K, et al. Sarcopenia and its relationship with bone mineral density in middle-aged and elderly European men. Osteoporos Int. 2013;24(1):87-98.
dc.relationLandi F, Liperoti R, Fusco D, Mastropaolo S, Quattrociocchi D, Proia A, et al. Prevalence and risk factors of sarcopenia among nursing home older residents. Journals of Gerontology Series A: Biomedical Sciences and Medical Sciences. 2012;67A(1):48-55.
dc.relationGariballa S, Alessa A. Sarcopenia: prevalence and prognostic significance in hospitalized patients. Clinical Nutrition. 2013;32(5):772-6.
dc.relationLandi F, Cruz-Jentoft AJ, Liperoti R, Russo A, Giovannini S, Tosato M, et al. Sarcopenia and mortality risk in frail older persons aged 80 years and older: results from ilSIRENTE study. Age and Ageing. 2013;42(2):203-9.
dc.relationArnold P, Bautmans I. The influence of strength training on muscle activation in elderly persons: a systematic review and meta-analysis. Experimental Gerontology. 2014;58:58-68.
dc.relationVásquez-Morales A, Wanden-Berghe C, Sanz-Valero J. Exercise and nutritional supplements; effects of combined use in people over 65 years; a systematic review. Nutrición Hospitalaria. 2013;28(4):1077-84.
dc.relationAvin KG, Frey LA. Age-related differences in muscle fatigue vary by contraction type: a meta-analysis. Physical Therapy. 2011;91(8):1153-65.
dc.relationDevries M, Phillips S. Creatine supplementation during resistance training in older adults - a meta-analysis. Medicine & Science in Sports & Exercise. 2014;46(6):1194-1203.
dc.relationMartilletti A. Medicina y terapéuticas alternativas y complementarias. En: Fundamentos teóricos de la homeopatía. Bogotá: Instituto Luis G. Páez; 2002. p. 407-11.
dc.relationHahnemann S. Órganon de la medicina. 6.a ed. Nueva Delhi, India: B. Jain Publishers Ltda; 1921; parágrafo 2.
dc.relationGonzález-Sarrías A, Larrosa M, García-iConesa MT, et al. Nutraceuticals for older people: Facts, fictions and gaps in knowledge. Maturitas. 2013(75):313-34.
dc.relationBlumberg JB, Camesano TA, Cassidy A, et al. Cranberries and their bioactive constituents in human health. Adv. Nutr. 2013;(4): 618-32.
dc.relationMa Y, Lindsey ML, Halade GV. DHA derivatives of fish oil as dietary supplements: a nutrition based drug discovery approach for therapies to prevent metabolic cardiotoxicity. Expert Opin Drug Discov. 2012 ag.;7(8):711-21.
dc.relationGwtek M, Czech N, Muc-Wierzgo M, et al. The active role of leguminous plant components in type 2 diabetes. Evid Based Complement Altern Med. 2014;1-11.
dc.relationKhodaie L, Sadeghpoor O. Ginger from ancient times to the new outlook. J Nat Pharm Prod. 2015;10(1):1-3.
dc.relationViljoen E, Visser J, Koen N, et al. A systematic review and meta-analysis of the effect and safety of ginger in the treatment of pregnancy-associated nausea and vomiting. Nutrition Journal. 2014;13:20.
dc.relationMinajur M, Gan SH, Khalil MI. Neurological effects of honey: current and future prospects. Evid Based Complement Altern Med. 2014;1-13.
dc.relationBystroma LM. The potential health effects of Melicoccus bijugatus Jacq. Fruits: Phytochemical, Chemotaxonomic and Ethnobotanical Investigations. Fitoterapia. 2012;83(2):266-71.
dc.relationLi Tan H, Thomas-Ahner JM, Grainger EM, Wan L, et al. Tomato-based food products for prostate cancer prevention: what have we learned? Cancer Metastasis Rev. 2010;29(3):1-25.
dc.relationAguirre L, Portillo MP, Hijona E, et al. Effects of resveratrol and other polyphenols in hepatic steatosis. World J Gastroenterol. 2014;21(23):7366-80.
dc.relationEscuredo O, González MI, Moncada GW, et al. Amino acid profile of the quinoa (Chenopodium quinoa Willd) using near infrared spectroscopy and chemometric techniques. J. Cereal Sci. 2014;60:67-74.
dc.relationTang Y, Li X, Zhang B, et al. Characterization of phenolics, betanins and antioxidant activities in seeds of three Chenopodium quinoa Willd genotypes. Food Chem. 2015;166:380-8.
dc.relationTang Y, Li X, Chen PX, et al. Characterization of fatty acid, carotenoid, tocopherol/tocotrienol compositions and antioxidant activities in seeds of three Chenopodium quinoa Willd. genotypes. Food Chem. 2015;174:502-08.
dc.relationEl-Sheekh MM, Daboor SM, Swelim MA, et al. Production and characterization of antimicrobial active substance from Spirulina platensis. Iranian J. Microbiol. 2014;6(2):112-9.
dc.relationL. Misurcova L, Buinka F, Ambrozova JV, et al. Amino acid composition of algal products and its contribution to RDI. Food Chem. 2014;151:120-5.
dc.relationKumudha A, Kumar SS, Thakur MS, et al. Purification, identification, and characterization of methylcobalamin from Spirulina platensis. J Agric Food Chem. 2010;2258(18):9925-30.
dc.relationKarkos PD, Leong SC, Karkos CD, et al. Spirulina in clinical practice: evidence-based human applications. Evid Based Complement Altern Med. 2011:1-4.
dc.relationKim DH, Park MH, Choi YJ, et al. Molecular study of dietary heptadecane for the anti-inflammatory modulation of NF-kB in the aged kidney. PLoS ONE. 2013;8(3):e59316.
dc.relationKhan Z, Bhadouria P, Bisen PS. Nutritional and therapeutic potential of Spirulina. Curr Pharm. Biotechnol. 2005;6(5):373-9.
dc.relationKoníčková R, Vaňková K, Vaníková J, et al. Anti-cancer effects of blue-green alga Spirulina platensis, a natural source of bilirubin-like tetrapyrrolic compounds. Ann. Hepatol. 2014;13(2):273-83.
dc.relationWeaver CM, Alekel DL, Wendy E, Ward WE, et al. Flavonoid intake and bone health. J Nutr Gerontol Geriatr. 2012;31(3):239-53.
dc.relationBaliga MS, Dsouza JJ. Amla (Emblica officinalis Gaertn), a wonder berry in the treatment and prevention of cancer. Eur. J. Cancer Prev. 2011;20:225-39.
dc.relationYuan G, Wahlqvist ML, He G, et al. Natural products and anti-inflammatory activity. Asia Pac J Clin Nutr 2006;15(2):143-52.
dc.relationCarrasco H, Tejada S. Soberanía alimentaria. La libertad de elegir para asegurar nuestra alimentación. Perú: Soluciones Prácticas; 2008.
dc.relationPérez H. TLC vs. soberanía alimentaria. 2.ª ed. Medellín; 2014.
dc.relationÁvila ÁJ, Carvajal Y. Agrocombustibles y soberanía alimentaria en Colombia. Cuadernos de Geografía. 2015 ene.;24(1):43.
dc.relationCorporación Grupo Semillas. Diversidad cultural y soberanía alimentaria en Colombia. Bogotá: Lina Forero Martínez Grupo Semillas; 2010.
dc.relationAsociación Paz con Dignidad. Cuaderno: ¿Por qué es la soberanía alimentaria una alternativa? España; 2011.
dc.relationRueda G, Monsores de Sá N. El impacto de la ausencia del Consejo Nacional de Bioética colombiano. Revista Latinoamericana de Bioética. 2015;15(2):144-55.
dc.relationGross H. Las cuatro dimensiones de seguridad alimentaria y nutricional. Agencia Alemana de Cooperación Técnica (GTZ); 2012.
dc.relationOrganización de las Naciones Unidas para la Alimentación y la Agricultura. Informe de políticas. Seguridad Alimentaria. 2006 jun.;2:1-4.
dc.relationOrganización de las Naciones Unidas para la Alimentación y la Agricultura. Una introducción a los conceptos básicos de la seguridad alimentaria; 2011.
dc.relationJohns Hopkins, Bloomberg School of Public Health, Berman Institute of Bioethics. Agenda for Ethics and Global Food Security; 2015. p. 1-20.
dc.relationOrganización de las Naciones Unidas para la Alimentación y la Agricultura, Fondo Internacional de Desarrollo Agrícola y Programa Mundial de Alimentos. El estado de la inseguridad alimentaria en el mundo. Roma: FAO; 2015.
dc.relationArias NE. Desnutrición y bioética: reflexiones sobre un problema de salud pública. Revista Latinoamericana de Bioética. 2012;12(1):28-35.
dc.relationOrganización de Estados Americanos. Protocolo adicional a la convención americana sobre derechos humanos en materia de derechos económicos, sociales, y culturales - Protocolo de San Salvador; 1988.
dc.relationAsamblea General de las Naciones Unidas. Declaración Universal de Derechos Humanos; 1948.
dc.relationOrganización de las Naciones Unidas para la Educación, la Ciencia y la Cultura. Declaración Universal de Bioética y Derechos Humanos. Unesco; 2005.
dc.relationBergel SD. Diez años de la Declaración Universal sobre Bioética y Derechos Humanos. Revista Bioética. 2015 dic. 1;23(3).
dc.relationRestrepo OC. La protección del derecho alimentario en Colombia: descripción y análisis de las políticas públicas sobre alimentación y nutrición desde 1967 a 2008. Opinión Jurídica. 2011;10(20):47-64.
dc.relationRosaline C, Cardozo A, De Asis L, Da Silva T, De Siqueira LE. La fragilidad humana frente a la pobreza y el hambre. Rev. Bioét. 2015;23(1):90-8.
dc.relationNussbaum MC. Las mujeres y el desarrollo humano. Barcelona: Herder; 2002.
dc.relationRodríguez G. Los alimentos transgénicos y las posibilidades de vida. Universidad El Bosque; 2002.
dc.relationLey 1374 de 2010, por la cual se crea el Consejo Nacional de Bioética y otras disposiciones; 2010.
dc.relationMoreno JM, Villa I. Aspectos éticos en nutrición e hidratación en el niño. Comentarios al documento de la Academia Americana de Pediatría. Acr Ped Esp. 2012 ene. 1;70(1):15.
dc.relationLeón FJ, León D, Navarrete VE (coords.). Bioética para la toma de decisiones. Parte 2 Análisis de casos ético-clínicos. Chile: FELALBE; 2013.
dc.relationFondo de las Naciones Unidas para la Infancia Unicef. Justicia y Derechos del Niño N.o 9. Santiago de Chile: Andros Impresores; 2007.
dc.relationRobaina GR, Riesgo S. Niños dependientes de tecnología, un problema emergente de salud. Rev Cub Ped. 2012;84(2):282-92.
dc.relationMendoza E. Bioética, nutrición y enfermo hospitalario. Revista del Centro de Investigación. Universidad La Salle. 2009 ene: 1;8(31):51-67.
dc.relationBeca JP. La toma de decisiones en ética clínica. Reflexiones sobre bioética: seminarios de la Academia Chilena de Medicina; 2014.
dc.relationAmeneiros-Lago E, Carballada-Rico C, Garrido-Sanjuán JA, García A. Adecuación de las intervenciones clínicas en pacientes con enfermedad avanzada y compleja. Propuesta de algoritmo para la toma de decisiones. Revista de Calidad Asistencial. 2015:1-6.
dc.relationCollazo E, Girela E. Problemas éticos en relación a la nutrición y a la hidratación: aspectos básicos. Nutrición Hospitalaria. 2011 dic. 1;26(6):1231-5.
dc.relationDruml C, Druml W, Ballmer PE, Oehmichen F, Shenkin A, Singer P, et al. ESPEN guideline on ethical aspects of artificial nutrition and hydration. Clinical Nutrition. 2016 jun.;35(3):545-56.
dc.relationMaltoni M, Setola E. Palliative sedation in patients with cancer. Journal of the Moffitt Cancer Center. 2015 oct.;22(4):433-41.
dc.relationCarrazco-Peña KB, Tene CE, Elizalde AM. Disfunción familiar y desnutrición en el anciano. Revista Médica del Instituto Mexicano del Seguro Social. 2015;53(1):14-9.
dc.relationCardona-Arango D, Segura-Cardona Á, Espinosa-López AM. Mortalidad de adultos mayores por deficiencias nutricionales en los departamentos de Colombia. Revista Salud Pública. 2012;14(4):584-97.
dc.relationBejarano-Roncancio JJ, Ardila-Guzmán LS, Montaño-Rodríguez A. Alimentación, nutrición y envejecimiento: un análisis desde el enfoque social de derechos. Revista Facultad de Medicina de la Universidad Nacional de Colombia. 2014 dic. 1;62:73-9.
dc.relationOrganización Mundial de la Salud. Obesidad y sobrepeso. Nota descriptiva N.° 311; 2015.
dc.relationDe Domingo BM, López J. La estigmatización social de la obesidad. Cuadernos de Bioética. 2014 ene:1;25(2):273-84.
dc.relationLolas-Stepke F. Ética y conducta alimentaria: la obesidad y sus desafíos. O Mundo da Saúde. 2014;38(3):349-54.
dc.relationFlores-Domínguez C. Ética en el tratamiento de la obesidad. Nutrición Clínica y Dietética Hospitalaria. 2012;32(2):54-7.
dc.relationAlmeida CM. Análisis de la bioética para las indicaciones de cirugía bariátrica en niños y adolescentes. Revista Bioética. 2015;23(1):61-9.
dc.relationGlobal Nutrition Report malnutition by, 2030. From promise to impact ending. Washington: International Food Policy Research Institute; 2016.
dc.relationCorredor EJM. Pobreza, desnutrición y reformas de salud en Colombia. Revista Salud, Historia y Sanidad. 2013;6(1):1-14.
dc.relationLee H. Impact of maternal diet on the epigenome during in utero life and the developmental programming of diseases in childhood and adulthood. Nutrients. 2015 nov.;7(11):9492-507.
dc.relationRamos N, Durán E. Mortalidad y desnutrición en los niños y niñas en Colombia: una realidad inaceptable. Sociedad Colombiana de Pediatría – Comité Pediatría Social y Derechos; 2016.
dc.relationEscobar-Triana J. Filosofía de un programa. Vol. 1. Bogotá: Kimpres Ltda.; 1984.
dc.relationPadilla de G. La enseñanza de la nutrición comunitaria. Reflexiones sobre un programa. Bogotá: Kimpres Ltda.; 1984. p. 75-80.
dc.relationWong-Orfila T, Gutiérrez-Maydata A. La nutrición y la formación del estudiante de Medicina al culminar el ciclo básico. Edumecentro. 2013;5(3):19-36.
dc.relationVega-Franco L, Iñárritu MdC. La enseñanza de la nutrición en la carrera de Medicina. Revista de la Facultad de Medicina UNAM. 2001;44(5):225-9.
dc.relationRodríguez M. Medicina Familiar en Colombia: experiencia de la Universidad El Bosque. Bogotá: Kimpres Ltda.; 2011.
dc.relationPatiño JF. Bases biológicas de la nutrición. En: Patiño JF, Echeverri S, editores. Metabolismo, nutrición y shock. 4.a ed. Bogotá: Panamericana; 2006. p. 1-30.
dc.relationCárdenas D. El papel del médico en la nutrición. Revista Salud Bosque. 2012;1(2):55-62.
dc.relationMartínez-López E, García-García MR, Campos-Pérez WY, González-Becerra K. Genómica nutricional: conceptos y expectativas. Revista de Endocrinología y Nutrición. 2013;21(1):22-34.
dc.relationLo C. Integrating nutrition as a theme throughout the medical school curriculum. The American Journal of Clinical Nutrition. 2000;73(3):889s.
dc.relationKretchmer N. Nutrition is the key stone of prevention. Am J Clin Nutr. 1994;60(1):1.
dc.relationMegias I, Salas-Salvadó J, Sánchez L, Balanzá R, Bulló M, García-Lorda P. La enseñanza de la nutrición en las facultades de Medicina: situación actual. Nutrición Hospitalaria. 2003;18(3):153-8.
dc.relationSalem Oramas CE, Córdova JA, Muñoz Cano, JM. Educación médica y nutrición: estudio acerca de las capacidades para la promoción de la alimentación saludable. Nutrición Clínica y Dietética Hospitalaria. 2015;35(3):59-65.
dc.relationArroyo P, Casanueva E, Kaufer-Horwitz M, Pérez-Lizaur AB, Córdova-Villalobos JA, Polo E. Formación nutriológica en las escuelas de Medicina de México. Revista de Investigación Clínica. 1998;50(6):517-24.
dc.relationAdams KM, Martin K, Zeisel S. Nutrition education in US medical schools: latest update of a national survey. Academic Medicine. 2010;85(9):1537.
dc.relationIvanova L, Spasov L, Stancheva A, Ganev V, Marinova Ts. Nutrition education at the Faculty of Medicine – Sofia University – new perspectives. Trakia Journal of Sciences. 2014;12(supl. 1):350-3.
dc.relationCárdenas D, Kling J, Hidalgo L, Bagés C, Navas C, Posada C. Consenso nacional sobre competencias profesionales en nutrición para el médico general. Revista de Metabolismo y Nutrición Clínica. 2012;3(2):1.
dc.relationVelasco N. Educación de terapia nutricional. En: Prado-Anaya R, Arenas-Márquez H, Arenas-Moya D, editores. Nutrición enteral y parenteral. 2.ª ed. México: McGraw-Hill; 2012. p. 655-661.
dc.relationHosseini S, Nayebi N, Amirkalali B, Seyedkhoei N, Heshmat R. Are physicians good candidates for recommending diet? Iranian Journal of Public Health. 2008 my. 1;37(1):48-53.
dc.relationMitchell MA, Donald RD, Rahman A. Are housestaff identifying malnourished hospitalized medicine patients? Applied Physiology, Nutrition, and Metabolism. 2014;39(10):1192-5.
dc.relationMowe M, et al. Insufficient nutritional knowledge among health care workers? Clinical Nutrition. 2008;27(2):196-202.
dc.relationMowe M, Bosaeus I, Rasmussen HH, Kondrup J, Unosson M, Irtun Ø. Nutritional routines and attitudes among doctors and nurses in Scandinavia: A questionnaire based survey. Clinical Nutrition. 2006;25(3):524-32.
dc.relationHeller T, Maislos M, Shahar D. Physicians and nurses knowledge and attitude towards nutritional therapy in diabetes. Harefuah. 2007;146(9):670-4.
dc.relationButt MI, et al. Doctors’ poor knowledge of nutritional supplementation in acutely unwell patients: no wonder recovery is slow. Proceedings of the Nutrition Society. 2010;69:13-14.
dc.relationGoiburu ME, Alfonzo LF, Aranda AL, Riveros MF, Ughelli MA, Dallman D, et al. Nivel de conocimiento en nutrición clínica en miembros del Equipo de Salud de Hospitales Universitarios del Paraguay. Nutrición Hospitalaria. 2006 oct.:1;21(5):591-5.
dc.relationSánchez L, García-Lorda P, Bullo M, Balanzá R, Megias I, Salas-Salvadó J. La enseñanza de la nutrición en las facultades de Medicina: situación actual. Nutrición Hospitalaria. 2003;XVIII(3):153-8.
dc.relationTuring E. Tuning América Latina [Internet]. 2011 [consultado 1.o de febrero de 2017]. Disponible en: http://www.tuningal.org/
dc.relationBall L, Barnes K, Laur C, et al. Setting priorities for research in medical nutrition education: an international approach. BMJ Open. 2016;6(12):1-7.
dc.relationFonseca M, Ruiz de Gauna P, editoras. Avances en educación médica: retos presentes para futuros profesionales de las ciencias de la salud. Bilbao: Sociedad de Educación Médica de Euskadi; 2001.
dc.relationCrawford A, Aspry KE. Teaching doctors-in-training about nutrition: Where are we going in 2016? Rhode Island Medical Journal. 2016 mzo.;99(3):23-5.
dc.relationDuperly J. Estrategias de intervención en hábitos saludables y actitudes hacia la consejería preventiva: logros, oportunidades y barreras en las facultades de Medicina de Colombia; Resumen ejecutivo. Reporte del IV Seminario Taller Nacional HD-HP. 2010:1-2.
dc.rightshttp://creativecommons.org/licenses/by-nc-sa/4.0/
dc.rightsAcceso abierto
dc.rights2018
dc.rightsAttribution-NonCommercial-ShareAlike 4.0 International
dc.subjectAlimentación
dc.subjectNutrición
dc.subjectCrecimiento y desarrollo
dc.subjectRegulación del metabolismo
dc.titleAlimentación y nutrición aplicada
dc.typebook


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