dc.creatorLedesma-Amaya, Luis I.
dc.creatorSalvador-Cruz, Judith
dc.creatorRodríguez-Agudelo, Yaneth
dc.creatorValencia-Flores, Matilde
dc.creatorArauz, Antonio
dc.date.accessioned2014-07-01 00:00:00
dc.date.accessioned2023-01-23T15:35:58Z
dc.date.accessioned2023-06-05T15:33:50Z
dc.date.available2014-07-01 00:00:00
dc.date.available2023-01-23T15:35:58Z
dc.date.available2023-06-05T15:33:50Z
dc.date.created2014-07-01 00:00:00
dc.date.created2023-01-23T15:35:58Z
dc.date.issued2014-07-01
dc.identifier10.14718/ACP.2014.17.2.5
dc.identifier1909-9711
dc.identifier0123-9155
dc.identifierhttps://hdl.handle.net/10983/27983
dc.identifierhttps://doi.org/10.14718/ACP.2014.17.2.5
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/6646146
dc.description.abstractExiste poca evidencia del deterioro cognoscitivo que defina el perfil del paciente con Infarto Lacunar (IL). El propósito de este estudio fue identificar las alteraciones neuropsicológicas en este tipo de pacientes. La muestra estuvo compuesta por 16 pacientes con IL y 16 participantes sanos con una edad promedio de 63 ± 9.41 y 64.75 ± 9.06 años y una escolaridad de 7.55 ± 4.34 y 7.94 ± 3.51, respectivamente. Se valoró la función cognoscitiva mediante un instrumento de tamizaje y una batería neuropsicológica. El análisis estadístico se llevó a cabo a través de la prueba Kruskal-Wallis y la U de Man-Whitney. Los pacientes con IL se caracterizan por la alteración de dominios como planeación, fluidez verbal, cambio atencional, habilidad visoconstructiva y velocidad de procesamiento de la información (p < 0.050). El IL se relaciona con el deterioro del funcionamiento ejecutivo y de velocidad de procesamiento, debido a la interrupción de circuitos frontocortico-subcorticales asociados con su correcto desempeño.
dc.description.abstractThere is little evidence of cognitive impairment to define the profile of patients with Lacunar Infarction (IL). The purpose of this study was to identify the neuropsychological disorders in these patients. The sample consisted of 16 patients with IL and 16 healthy control participants with an average age of 63 ± 9.41 and 64.75 ± 9.06 years, and average schooling of 7.55 ± 4.34 and 7.94 ± 3.51, respectively. Cognitive function was assessed using a screening tool and a neuropsychological battery. Statistical analysis was carried out by the Kruskal-Wallis and Mann-Whitney U tests. Patients with IL are characterized by the alteration of domains such as planning, verbal fluency, attention switching, visoconstructive skill and information processing speed (p <0.050). The IL is related to the impairment of executive functioning and processing speed, due to the interruption of frontocortico-subcortical circuits associated with their proper performance.
dc.languagespa
dc.publisherUniversidad Católica de Colombia
dc.relationhttps://actacolombianapsicologia.ucatolica.edu.co/article/download/163/203
dc.relationNúm. 2 , Año 2014
dc.relation52
dc.relation2
dc.relation43
dc.relation17
dc.relationActa Colombiana de Psicología
dc.relationAdams, H., Bendixen, B., Kappelle, L., Biller, J., Love, B., Gordon, D., & Marsh, E. (1993). Classification of subtype of acute ischemic stroke. Definitions for use in a multicenter clinical trial. TOAST. Trial of Org 10172 in Acute Stroke Treatment. Stroke, 24, 35-41.
dc.relationArauz, A., Murillo, L., Carlos, C., Barinagarramantiera, F., & Higuera, J. (2003). Prospective Study of Single and Multiple Lacunar Infarcts Using Magnetic Resonance Imaging. Stroke, 34, 2453-2458.
dc.relationArboix, A. (2011). Lacunar infarct and cognitive decline. Expert Review of Neurotherapeutics, 11(9), 1251-1252.
dc.relationBaune, B., Roesler, A., Knech, S., & Berger, K. (2009). Single and combined effects of cerebral white matter lesions and lacunar infaction on cognitive function in an erderly population. Journal of Gerontology: Medical Sciences, 64(1), 118-124.
dc.relationBenavente, O., White, C., Pearce, L., Pergola, P., Roldan, A. B.-F., Christopher, C.,... Hart, R. (2011). The Secondary Prevention of Small Subcortical Strokes (SPS3) study. International Journal of Stroke, 6, 164-175.
dc.relationBenisty, S., Gouw, A., Porcher, R., Madureira, S., Hernandez, K., Poggesi, A., . . . Chabriat, H. (2009). Location of lacunar infarcts correlates with cognition in a sample of non-diabled subjects with age-related white-matter changes: the LADIS study. Journal of Neurology, Neurosurgery and Psichiatry, 80, 478-483.
dc.relationBonelli, R., & Cummings, J. (2008). Frontal-Subcortical Dementias. The neurologist, 14(2), 100-107.
dc.relationChen-Fu, C., Lan, S., Khor, G; Lai, C & Tai, C. (2005). Cognitive disfunction after acute lacunar infact. Kaohsiung Journal of Medical Sciences, 6(21), 267-271.
dc.relationCulbertson, W., & Zillmer, E. (1999). Tower of London Drexel University, examiner’s manual resarch version. Toronto: Multi-Health Systems.
dc.relationCummings, J. (1993). Frontal-Subcortical Circuits and Human Behavior. Archives of neurology, 50, 873-880.
dc.relationDuering, M., Gonik, M., Malik, R., Zieren, N., Reyes, S., Jouvent, E.,Dichgans, M. (2013). Identification of a strategic brain network underlyng processing speed deficits in vascular cognitive impairment. NeuroImage, 66, 177-183.
dc.relationElwood, R. (1995). The California Verbal Learning Test: Psychometric Characteristics and Clinical Application. Neuropsychology Review, 5(3), 173-201.
dc.relationFilley, C. M., & Brodtmann, A. (2011). Lacunes and cognitive decline. Neurology, 1856-1857. Fisher, C. (1982). Lacunar strokes and infarcts: A review. Neurology, 32, 871-876.
dc.relationFure, B., Bruun Wyller, T., Engedal, K., & Thommessen, B. (2006). Cognitive impairments in acute lacunar stroke. Acta Neurologica Scandinavica, 17-22.
dc.relationGeerlings, M., Appelman, A., Vincken, K., Mali, W., & van der Graaf, Y. (2009). Association of White Matter Lesions and Lacunar Infarcts With Executive Functioning. The SMART-MR Study. American Journal of Epidemiology, 170(9), 1147-1155.
dc.relationGrau-Olivares, M., Arboix, A., Bartrés-Faz, D., & Junqué, C. (2007). Neuropsychological abnormalities associated with lacunar infarction. Journal of neurological sciences (257), 160-166.
dc.relationGrau-Olivares, M., Arboix, A., Junqué, C., Arenaza-Urquijo, E., Rovira, M., & Bartrés-Faz, D. (2010). Progressive gray matter atrophy in lacunar patients with Vascular Mild Cognitive Impairment . Cerebrovascular Diseases, 157-166.
dc.relationHachinski, V., & Bowler, J. (1993). Vascular Dementia. Neurology (43), 2159-2160. Jacova, C., Pearce, L., Costello, R., McClure, L., Holliday, S., Hart, R., & Benavente, O. (2012). Cognitive Impairment in Lacunar Strokes The SPS3 Trial. 72(3), 351-362.
dc.relationJokinen, H., Gouw, A., Madureira, S., Yilikoski, R., Straaten, E., van der Flier, W., Erkenjuntti, T. (2011). Incident lacunes inflluence cognitive decline The LADIS study. Neurology, 76, 1872-1878.
dc.relationJunqué, C., & Mercé, J. (1990). Velocidad de procesamiento cognitivo en el envejecimiento. Anales de Psicología, 199-207.
dc.relationJurado, S., Villegas, E., Méndez, L., Rodríguez, F., Loperena, V., & Varela, R. (1998). La estandarización del inventario de Depresión de Beck para los residentes de la ciudad de México. Salud Mental, 1(3), 26-31.
dc.relationKandiah, N., Wiryasaputra, L., Narasimhalu, K., Karandikar, A., Marmin, M., Chua, E., & Sitoh, Y.-Y. (2011). Frontal subcortical ischemia is crucial for post stroke cognitive Impairment. Journal of Neurological Sciences, 92-95.
dc.relationKolb, B., & Whishaw, I. (2008). Fundamentals of Human Neuropsychology. New York: Worth Publishers.
dc.relationLin, K.-N., Wang, P.-N., Liu, C.-Y., Chen, W.-T., Lee, Y.-C., & Liu, H.-C. (2002). Cutoff Scores of the Cognitive Abilities Screening Instrument, Chinese Version in Screening of Dementia. Dementia and Geriatric Cognitive Disorders, 176-182.
dc.relationMarin, R., Bidrzycki, R., & Firinciogullari, S. (1991). Reability and validity of the Apathy Evaluation Scale. Psychiatry Research, 38, 143-162.
dc.relationMohr, J., Choi, D., Grotta, J., Weir, B., Wolf, P., & Livingstone, C. (2004). Stroke, Pathophysiology, diagnosis and management. New York: Human Press.
dc.relationMungas, D. (2005). Contributions of subcortical Lacunar Infarcts. En R. Paul, R. Cohen, B. Ott, & S. Salloway, Vascular Dementia. Cerebrovascular Mechanisms and Clinical Management (pp. 211-222). New Jersey: Humana press.
dc.relationMcMurtray, A., Liao, A., Haider, J., Lich, E., & Mendez, M. (2007). Cognitive performance after lacunar stroke correlates with leukoaraiosis severity. Cerebrovascular diseases, 24, 271-276.
dc.relationReed, B. E., Mungas, D., Weiner, M., Kramer, J., & Jagust, W. (2004). Effects of white matter lesions and lacunes on cortical function. Archives of neurology, 61, 1545-1550.
dc.relationRey, A. (1942). L´examen psychologique dans les cas de encephalopathie traumatique. Archives de Psychologie,(28), 286-340.
dc.relationRoss, T., Calhoun, E., Cox, T., & Wenner, C. (2007). The reliability and validity of quialitative scores for the Controlled Oral Word Association Test. Archives of Clinical Neuropsychology, 22, 475-488.
dc.relationRoyall, D., Cordes, J., & Polk, M. (1998). CLOX: An executive clock drawing task. Journal of Neurology, Neurosurgery and Psychiatry, 64, 588-594.
dc.relationSalthouse, T. (1985). Speed of behavior and its implications for cognition. En J. Birren, & K. Schale, Handbook of the psychology of aging (pp. 400-426). New York: Van Nostrand Reinhold.
dc.relationSedo, M. (2007). FDT-Test de los Cinco Digitos. Madrid: TEA ediciones.
dc.relationTeng, E., Hasegwa, K., Homma, A., Imai, Y., Larson, E., Graves, A., Chiu, D. e. (1994). The Cognitive Abilities Screening Instrument (CASI): a practical test for cross-cultural epidemiological studies of dementia. International Psicogeriatric, 45-58.
dc.relationTirapú-Ustárroz, J., Luna-Lario, P., Hernáez-Goñi, P., & García-Suescun, I. (2011). Relación entre la sustancia blanca y las funciones cognitivas. Revista de Neurologia, 52(12), 725-742.
dc.relationTripathi, R., Wang, K., Priyanka, M., & Spencer, D. (2011). The influence of lacunes on cognitive function. Neurology, sup 111.
dc.relationVelásquez-Pérez, L., Juárez-Olivera, S., Jiménez-Marcial, M., & Trejo-Contreras, A. (2007). Epidemiología y tendencia del Evento Vascular Cerebral en el Instituto Nacional de Neurología y Neurocirugía Manuel Velasco Suaréz durante el período 1997-2003. Neurología, 22(1), 5-10.
dc.relationWeschsler, D. (1999). WAIS III. Escala de inteligencia de Weschsler para adultos III. Manual Técnico. Madrid: TEA Ediciones.
dc.relationYoung, A. (2011). Vascular Dementia. Chonnam Medical Journal, 47, 66-71.
dc.rightsinfo:eu-repo/semantics/openAccess
dc.rightshttp://purl.org/coar/access_right/c_abf2
dc.rightshttps://creativecommons.org/licenses/by-nc-sa/4.0/
dc.rightsLuis I. Ledesma Amaya, Judith Salvador Cruz, Yaneth Rodríguez Agudelo - 2014
dc.sourcehttps://actacolombianapsicologia.ucatolica.edu.co/article/view/163
dc.subjectVascular cognitive impairment
dc.subjectInternal capsule
dc.subjectCorona radiata
dc.subjectBrain stem
dc.subjectStroke
dc.subjectNeuropsychology
dc.subjectDeterioro cognoscitivo vascular
dc.subjectCápsula interna
dc.subjectCorona radiada
dc.subjectTallo encefálico
dc.subjectInfarto cerebral
dc.subjectNeuropsicología
dc.titleAlteraciones neuropsicológicas asociadas en pacientes con infarto lacunar.
dc.typeArtículo de revista


Este ítem pertenece a la siguiente institución