dc.creatorAparecida de Aro A.
dc.creatorde Campos Vidal B.
dc.creatorPimentel E.R.
dc.date2012
dc.date2015-06-26T20:30:15Z
dc.date2015-11-26T14:29:02Z
dc.date2015-06-26T20:30:15Z
dc.date2015-11-26T14:29:02Z
dc.date.accessioned2018-03-28T21:32:15Z
dc.date.available2018-03-28T21:32:15Z
dc.identifier
dc.identifierMicron. , v. 43, n. 2-3, p. 205 - 214, 2012.
dc.identifier9684328
dc.identifier10.1016/j.micron.2011.07.015
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84855215770&partnerID=40&md5=81449d4ef956d6e2c67fd87419a696e1
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/97273
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/97273
dc.identifier2-s2.0-84855215770
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1246745
dc.descriptionTendons are formed by dense connective tissue composed of an abundant extracellular matrix (ECM) that is constituted mainly of collagen molecules, which are organized into fibrils, fibers, fiber bundles and fascicles helicoidally arranged along the largest axis of the tendon. The biomechanical properties of tendons are directly related to the organization of the collagen molecules that aggregate to become a super-twisted cord. In addition to collagen, the ECM of tendons is composed of non-fibrillar components, such as proteoglycans and non-collagenous glycoproteins. The capacity of tendons to resist mechanical stress is directly related to the structural organization of the ECM. Collagen is a biopolymer and presents optical anisotropies, such as birefringence and linear dichroism, that are important optical properties in the characterization of the supramolecular organization of the fibers. The objective of this study was to present a review of the composition and organization of the ECM of tendons and to highlight the importance of the anisotropic optical properties in the study of alterations in the ECM. © 2011 Elsevier Ltd.
dc.description43
dc.description2-3
dc.description205
dc.description214
dc.descriptionAhtikoski, A.M., Koskinen, S.O.A., Virtanen, P., Kovanen, V., Risteli, J., Takala, T.E.S., Synthesis and degradation of type IV collagen in rat skeletal muscle during immobilization in shortened and lengthened positions (2003) Acta Physiol. Scand., 177, pp. 473-481
dc.descriptionAldrovani, M., Guaraldo, A.M., Vidal, B.C., Optical anisotropies in corneal stroma collagen fibers from diabetic spontaneous mice (2007) Vision Res., 47 (26), pp. 3229-3237
dc.descriptionAlexander, R.M., Energy-saving mechanisms in walking and running (1991) J. Exp. Biol., 160, pp. 55-69
dc.descriptionAlexander, R.M., Bennet-Clark, H.C., Storage of elastic strain energy in muscle and other tissues (1997) Nature, 265, pp. 114-117
dc.descriptionAlhadlaq, H., Xia, Y., Moody, J., Matyas, J., Detecting structural changes in early experimental osteoarthritis of tibial cartilage by microscopic magnetic resonance imaging and polarised light microscopy (2004) Ann. Rheum. Dis., 63 (6), pp. 709-717
dc.descriptionAlmeida, F.M., Tomiosso, T.C., Biancalana, A., Mattiello-Rosa, S.M., Vidal, B.C., Gomes, L., Pimentel, E.R., Effects of stretching on morphological and biochemical aspects of the extracellular matrix of the rat calcaneal tendon (2010) Cell Tissue Res., 342, pp. 97-105
dc.descriptionAppleyard, R.C., Ghosh, P., Swain, M.V., Biomechanical, histological and immunohistological studies of patellar cartilage in an ovine model of osteoarthritis induced by lateral meniscectomy (1999) Osteoarthritis Cartilage, 7, pp. 281-294
dc.descriptionAquino, C.F., Viana, S.O., Fonseca, S.T., Biomechanical behavior and response of biological tissues to stress and immobilization (2005) Physiother. Mov., 18 (2), pp. 35-43
dc.descriptionAro, A.A., Vidal, B.C., Tomiosso, T.C., Matiello-Rosa, S.M.G., Gomes, L., Pimentel, E.R., Structural and biochemical analysis of the effect of immobilization followed by stretching on the calcaneal tendon of rats (2008) Connect. Tissue Res., 49, pp. 443-454
dc.descriptionBanes, A.J., Weinhold, P., Yang, X., Tsuzaki, M.D.D.S., Bynum, D.M.D., Bottlang, M.B.S., Brown, T., Gap junctions regulate responses of tendon cell ex vivo to mechanical loading (1999) Clin. Orthop. Relat. Res., 367, pp. 356-370
dc.descriptionBedi, A., Fox, A.J., Harris, P.E., Deng, X.H., Ying, L., Warren, R.F., Rodeo, S.A., Diabetes mellitus impairs tendon-bone healing after rotator cuff repair (2010) J. Shoulder Elbow Surg., 19 (7), pp. 978-988
dc.descriptionBenevides, G.P., Pimentel, E.R., Toyama, M., Novello, J.C., Marangoni, S., Gomes, L., Biochemical and biomechanical analysis of tendons of caged and penned chickens (2004) Connect. Tissue Res., 45, pp. 206-215
dc.descriptionBenjamim, M., Ralphs, J.R., The cell and development biology of tendons and ligaments (2000) Int. Rev. Cytol., 196, pp. 85-130
dc.descriptionBenjamin, M., Tyers, R.N.S., Ralphs, J.R., Age-related changes in tendon fibrocartilage (1991) J. Anat., 179, pp. 127-136
dc.descriptionBenoit, A.M., Naoun, K., Louis-Dorr, V., Mala, L., Naspiller, A., Linear dichroism of the retinal nerve fiber layer expressed with mueller matrices (2001) Appl. Opt., 40 (4), pp. 565-569
dc.descriptionBiancalana, A., Velloso, L.A., Gomes, L., Obesity affects collagen fibril diameter and mechanical properties of tendons in zucker rats (2010) Connect. Tissue Res., 51, pp. 171-178
dc.descriptionBinneboesel, M., Klink, C., Krones, C., Jansen, M., Cloer, C., Oettinger, A., Schumpelick, V., Otto, J., Erythropoietin (EPO) influences colonic anastomotic healing in a rat model by modulating collagen metabolism (2010) J. Surg. Res., 163 (2), pp. 67-72
dc.descriptionBirk, D.E., Hahn, R.A., Linsemayer, C.Y., Zycband, E.I., Characterization of fibril segments from chicken embryo cornea, dermis and tendon (1996) Matrix Biol., 15, pp. 111-118
dc.descriptionBloch, R.J., Capetanaki, Y., O'Neill, A., Reed, P., Williams, M.W., Resneck, W.G., Porter, N.C., Ursitti, J.A., Costameres: repeating structures at the sarcolemma of skeletal muscle (2002) Clin. Orthop., 403, pp. 203-210
dc.descriptionBorges, L.F., Gutierrez, P.S., Marana, H.R.C., Taboga, S.R., Picrosirius-polarization staining method as an efficient histopathological tool for collagenolysis detection in vesical prolapse lesions (2007) Micron, 38, pp. 580-583
dc.descriptionBosch, G., Moleman, M., Barneveld, A., van Weeren, P.R., van Schie, H.T., The effect of platelet-rich plasma on the neovascularization of surgically created equine superficial digital flexor tendon lesions (2010) Scand. J. Med. Sci. Sports, , March 10 [Epub ahead of print]
dc.descriptionBraga-Vilela, A.S., Pimentel, E.R., Marangoni, S., Toyama, M.H., Vidal, B.C., Extracellular matrix of porcine pericardium: biochemistry and collagen architecture (2008) J. Membr. Biol., 221, pp. 15-25
dc.descriptionBulheller, B.M., Nodger, A., Hirst, J.D., Circular and linear dichroism of proteins (2007) Phys. Chem. Chem. Phys., 9 (17), pp. 2020-2025
dc.descriptionBurridge, K., Chrzanowska-Wodnicka, M., Focal adhesions, contractility and signaling (1996) Annu. Rev. Cell. Dev. Biol., 12, pp. 463-518
dc.descriptionCarragher, N.O., Levkau, B., Ross, R., Raines, E.W., Degraded collagen fragments promote rapid disassembly of smooth muscle focal adhesions that correlate with cleavage of pp125FAK, paxillin and talin (1999) J. Cell. Biol., 147, pp. 619-629
dc.descriptionCarroll, C.C., Dickinson, J.M., Haus, J.M., Lee, G.A., Hollon, C.J., Aagaard, P., Magnusson, S.P., Trapp, T.A., Influence of aging on the in vivo properties of human patellar tendon (2008) J Appl. Physiol., 105 (6), pp. 1907-1915
dc.descriptionCarson, J.A., Wei, L., Integrin signaling potential for mediating gene expression in hypertrophying skeletal muscle (2000) J. Appl. Physiol., 88, pp. 337-343
dc.descriptionCarvalho, H.F., Felisbino, S.L., Covizi, D.Z., Della Colleta, H.H.M., Gomes, L., Structure and proteoglycan composition of specialized regions of the elastic tendon of the chicken wing (2000) Cell Tissue Res., 300, pp. 435-446
dc.descriptionCarvalho, H.F., Vidal, B.C., Cell types and evidence for traumatic cell death in a pressure-bearing tendon of Rana catesbeiana (1994) Tissue Cell., 26 (6), pp. 841-848
dc.descriptionCarvalho, H.F., Felisbino, S.L., Vogel, K., Douglas, K., Identification, content and distribution of type VI collagen in bovine tendons (2006) Cell Tissue Res., 325 (2), pp. 315-324
dc.descriptionCassim, J.Y., Tobias, O.S., Birefringence of muscle proteins and the problem of structural birefringence (1968) Biochem. Biophys. Acta, 168, pp. 462-471
dc.descriptionChicurel, M.E., Chen, C.S., Ingber, D.E., Cellular control lies in the balance of forces (1998) Curr. Opin. Cell. Biol., 10, pp. 232-239
dc.descriptionChiquet, M., Regulation of extracellular matrix gene expression by mechanical stress (1999) Matrix Biol., 18, pp. 417-426
dc.descriptionChiquet, M., Matthisson, M., Koch, M., Tannheimer, M., Chiquet-Ehrisman, R., Regulation of extracellular matrix synthesis by mechanical stress (1996) Biochem. Cell. Biol., 74, pp. 737-744
dc.descriptionChiquet, M., Renedo, A.S., Huber, F., Flück, M., How do fibroblasts translate mechanical signals into changes in extracellular matrix production? (2003) Matrix Biol., 22, pp. 73-80
dc.descriptionComper, W.D., Extracellular matrix: tissue function (1996) Tendon and Ligaments, 1, pp. 303-327. , Harwood Academic, Amsterdam
dc.descriptionCook, J.L., Bass, S.L., Black, J.E., Hormone therapy is associated with smaller Achilles tendon diameter in active post-menopausal women (2007) Scand. J. Med. Sci. Sports, 17 (2), pp. 128-132
dc.descriptionCovizi, D.Z., Felisbino, S.L., Gomes, L., Pimentel, E.R., Carvalho, H.F., Regional adaptations in three rat tendons (2001) Tissue Cell, 33 (5), pp. 483-490
dc.descriptionDeMaio, M., Paine, R., Drez, D.J., Achilles tendonitis-sports (1995) Med. Rehabil. Ser., 18, pp. 195-204
dc.descriptionDe Oliveira, R.R., De Oliveira, A.L.B., De Castro Silveira, P.V., Da Silva, R.J., De Moraes, S.R.A., Alterations of tendons in patients with diabetes mellitus: a systematic review (2010) Diabetic Med.
dc.descriptionDe Oliveira, R.R., de Lira, K.D., Silveira, P.V., Coutinho, M.P., Medeiros, M.N., Teixeira, M.F., de Moraes, S.R., Mechanical properties of achilles tendon in rats induced to experimental diabetes (2011) Ann. Biomed. Eng., 39 (5), pp. 1528-1534
dc.descriptionDerwin, K.A., Soslowsky, L.J., Kimura, J.H., Plaas, A.H., Proteoglycans and glycosaminoglycan fine structures in the mouse tail tendon fascicle (2001) J. Orthop. Res., 19, pp. 269-277
dc.descriptionDoessing, S., Heinemeier, K.M., Holm, L., Mackey, A.L., Schjerling, P., Rennie, M., Smith, K., Kjaer, M., Growth hormone stimulates the collagen synthesis in human tendon and skeletal muscle without affecting myofibrillar protein synthesis (2010) J. Physiol., 588 (2), pp. 341-351
dc.descriptionDouglas, T., Heinemann, S., Bierbaum, S., Scharnweber, D., Worch, H., Fibrillogenesis of collagen types I, II, and III with small leucine-rich proteoglycans decorin and biglycan (2006) Biomacromolecules, 7 (8), pp. 2388-2393
dc.descriptionD'Souza, D., Patel, K., Involvement of long- and short-range signalling during early tendon development (1999) Anat. Embryol., 200, pp. 367-375
dc.descriptionDudhia, J., Scott, C.M., Draper, E.R., Heinegård, D., Pitsillides, A.A., Smith, R.K., Aging enhances a mechanically-induced reduction in tendon strength by an active process involving matrix metalloproteinase activity (2007) Aging Cell., 6 (4), pp. 547-556
dc.descriptionEsquisatto, M.A.M., Joazeiro, P.P., Pimentel, E.R., Gomes, L., Ultrastructural characteristics of tensional regions in tendons from rats of different ages (2003) Braz. J. Morphol. Sci., 20 (2), pp. 109-114
dc.descriptionEsquisatto, M.A.M., Joazeiro, P.P., Pimentel, E.R., Gomes, L., The effect of age on the structure and composition of rat tendon fibrocartilage (2007) Cell Biol. Int., 31, pp. 570-577
dc.descriptionEvanko, S.P., Vogel, K.G., Ultrastructure and proteoglycan composition in the developing fibrocartilaginous region of bovine tendon (1990) Matrix, 10 (6), pp. 420-436
dc.descriptionEyre, D.R., Paz, M.A., Gallop, P.M., Crosslinks in collagen and elastin (1984) Annu. Rev. Biochem., 53, pp. 717-748
dc.descriptionFarris, A.B., Adams, C.D., Brousaides, N., Della Pelle, P.A., Collins, A.B., Moradi, E., Smith, R.N., Colvin, R.B., Morphometric and visual evaluation of fibrosis in renal biopsies (2011) J. Am. Soc. Nephrol., 22 (1), pp. 176-186
dc.descriptionFeitosa, V.L.C., Esquisatto, M.A.M., Joazeiro, P.P., Gomes, L., Felisbino, S.L., Pimentel, E.R., Variations in the glycosaminoglycans content, swelling properties and morphological aspects of different regions of the superficial digital flexor tendon of pigs (2002) Cell. Mol. Biol., 48, pp. 359-369
dc.descriptionFeitosa, V.L.C., Vidal, B.C., Pimentel, E.R., Optical anisitropy of a pig tendon under compression (2002) J. Anat., 200 (1), pp. 105-110
dc.descriptionFeitosa, V.L.C., Esquisatto, M.A.M., Joazeiro, P.P., Felisbino, S.L., Pimentel, E.R., Physicochemical and structural analysis of three regions of the deep digital flexor tendon of pigs (2005) Braz. J. Morphol. Sci., 22 (2), pp. 113-119
dc.descriptionFeitosa, V.L.C., Reis, F.P., Esquisatto, M.A.M., Joazeiro, P.P., Vidal, B.C., Pimentel, E.R., Comparative ultrastructural analysis of different regions of two digital flexor tendons of pigs (2006) Micron, 37, pp. 518-525
dc.descriptionFelisbino, S.L., Carvalho, H.F., Identification na distribution type VI collagen in tendon fibrocartilages (1999) J. Submicrosc. Cytol. Pathol., 31 (2), pp. 187-195
dc.descriptionFontana, K., Almeida, F.M., Tomiosso, T.C., Pimentel, E.R., Cruz Höfling, M.A., Effect of high intensity aerobic exercise and mesterolone on remodeling of Achilles tendon of C57BL/6 transgenic mice (2010) Cell Tissue Res., 339, pp. 411-420
dc.descriptionFox, A.J., Bedi, A., Deng, X.H., Ying, L., Harris, P.E., Warren, R.F., Rodeo, S.A., Diabetes mellitus alters the mechanical properties of the native tendon in an experimental rat model (2011) J. Orthop. Res., 29 (6), pp. 880-885
dc.descriptionFranchi, M., Fini, M., Quaranta, M., De Pasquale, V., Raspanti, M., Giavaresi, G., Ottani, V., Ruggeri, A., Crimp morphology in relaxed and stretched rat Achilles tendon (2007) J. Anat., 210, pp. 1-7
dc.descriptionFredrick, S., Stina, E., Anja, N., Frank, Z., Dick, H., Kjell, H., Ultrastructural immunolocalization of cartilage oligomeric matrix protein, thrombospondin-4, and collagen fibril size in rodent Achilles tendon in relation to exercise (2007) Connect. Tissue Res., 48, pp. 254-262
dc.descriptionFrisch, S.M., Vuori, K., Ruoslahti, E., Chan, H.P., Control of adhesion-dependent cell survival by focal adhesion kinase (1996) J. Cell. Biol., 134, pp. 793-799
dc.descriptionGathercole, L.J., Keller, A., Crimp morphology in the fibre-forming collagens (1991) Matrix, 11, pp. 214-234
dc.descriptionGelse, K., Pöschl, E., Aigner, T., Collagens-structure, function, and biosynthesis (2003) Adv. Drug Deliv. Rev., 55 (12), pp. 1531-1546
dc.descriptionGoldschmidt, M.E., McLeod, K.J., Taylor, W.R., Integrin-mediated mechanotransduction in vascular smooth muscle cells: frequency and force response characteristics (2001) Circ. Res., 88, pp. 674-680
dc.descriptionGuerra, F.R., Pires, I.L.S., Aro, A.A., Camargo, L.C., Pimentel, E.R., Palomari, E.T., Protocol on induction of TMJ articular disc degeneration in rats by utilization of botulinum toxin (2010) Arch. Oral Biol., 55 (7), pp. 530-534
dc.descriptionHall, C.M., Brody, L.T., (2001) Exercício terapêutico na busca da função, Rio de Janeiro-RJ, pp. 57-168. , Guanabara-Koogan
dc.descriptionHamill, O.P., Martinac, B., Molecular basis of mechanotransduction in living cells (2001) Physiol. Rev., 81, pp. 685-740
dc.descriptionHanson, A.N., Bentley, J.P., Quantitation of type I and type III collagen ratios in small samples of human tendon, blood vessels and atherosclerotic plaque (1983) Anal. Biochem., 130, pp. 32-40
dc.descriptionHay, E.D., (1991) Cell Biology of Extracellular Matrix, , Plenum, New York
dc.descriptionHughes, L., Archer, C., ap Gwynn, I., The ultrastructure of mouse articular cartilage: collagen orientation and implications for tissue functionality. A polarized light and scanning electron microscope study and review (2005) Eur. Cells Mater., 9, pp. 68-84
dc.descriptionIngber, D.E., Dike, L., Hansen, L., Karp, S., Liley, H., Maniotis, A., McNamee, H., Wang, N., Cellular tensegrity: exploring how mechanical changes in the cytoskeleton regulate cell growth, migration and tissue pattern during morphogenesis (1994) Int. Rev. Cytol., 150, pp. 173-224
dc.descriptionIhlemann, J., Ploug, T., Hellsten, Y., Galbo, H., Effect of tension on contraction-induced glucose transport in rat skeletal muscle (1999) Am. J. Physiol. Endocrinol. Metab., 277, pp. 208-214
dc.descriptionIozzo, R.V., Murdoch, A.D., Proteoglycans of the extracellular environment: clues from the gene and protein side offer novel perspectives in molecular diversity and function (1996) FASEB J., 10, pp. 598-614
dc.descriptionJames, R., Kesturu, G., Balian, G., Chhabra, A.B., Tendon: biology, biomechanics, repair, growth factors, and envolving treatment options (2008) J. Hand Surg., 33 A, pp. 102-112
dc.descriptionJaronski, J.W., Kasprzak, H.T., Linear birefringence measurements of the in vitro human cornea (2003) Ophthal. Physiol. Opt., 23 (4), pp. 361-369
dc.descriptionJin, L.W., Claborn, K.A., Kurimoto, M., Geday, M.A., Maezawa, I., Sohraby, F., Estrada, M., Kahr, B., Imaging linear birefringence and dichroism in cerebral amyloid pathologies (2003) Proc. Natl. Acad. Sci., 100 (26), pp. 15294-15298
dc.descriptionJózsa, L., Kannus, P., Balint, B.J., Reffy, A., Three-dimensional ultrastructure of human tendons (1991) Acta Anat., 142, pp. 306-312
dc.descriptionJózsa, L., Kvist, M., Kannus, P., Vieno, T., Järvinen, M., Lehto, M., Sructure and macromolecular composition of the myotendineal junction. Histochemical immunohistochemical and electron microscopc study of the rat calt muscle (1991) Acta Morphol. Hung., 39 (4), pp. 287-297
dc.descriptionJózsa, L.G., Kannus, P., Human tendons: anatomy, physiology and pathology (1997) Structure and Metabolism of Normal Tendons, pp. 46-97. , Human Kinetics, Champaign
dc.descriptionJulkunen, P., Kiviranta, P., Wilson, W., Jurvelin, J.S., Korhonen, R.K., Characterization of articular cartilage by combining microscopic analysis with a fibril-reinforced finite-element model (2007) J. Biomech., 40 (8), pp. 1862-1870
dc.descriptionKadler, K.E., Holmes, D.F., Trotter, J.A., Chapman, J.A., Collagen fibril formation-review (1996) Biochem. J., 316, pp. 1-11
dc.descriptionKannus, P., Structure of the tendon connective tissue (2000) Scand. J. Med. Sci. Sports, 10, pp. 312-320
dc.descriptionKaemmer, D., Bozkurt, A., Otto, J., Junge, K., Klink, C., Weis, J., Sellhaus, B., Klinge, U., Evaluation of tissue components in the peripheral nervous system using Sirius red staining and immunohistochemistry: a comparative study (human, pig, rat) (2010) J. Neurosci. Methods, 190 (1), pp. 112-116
dc.descriptionKer, R.F., Alexander, M., Bennett, M.B., Why are mammalian tendons so thick? (1988) J. Zool. Lond., 216, pp. 309-324
dc.descriptionKjaer, M., Role of extracellular matrix in adaptation of tendon and skeletal muscle to mechanical loading (2004) Physiol. Rev., 84, pp. 649-698
dc.descriptionKnighton, R.W., Huang, X.-R., Linear birefringence of the central human cornea (2002) Invest. Ophthalmol. Visual Sci., 43 (1), pp. 82-86
dc.descriptionKogure, S., Kohwa, H., Tsukahara, S., Effect of uncompensated corneal polarization on the detection of localized retinal nerve fiber layer defects (2008) Ophthal. Res., 40 (2), pp. 61-68
dc.descriptionKomi, P.V., Fukashiro, S., Jarvinen, M., Biomechanical loading of Achilles tendon during normal locomotion (1992) Clin. Sports Med., 11, pp. 521-531
dc.descriptionKorol, R.M., Finlay, H.M., Josseau, M.J., Lucas, A.R., Canham, P.B., Fluorescence spectroscopy and birefringence of molecular changes in maturing rat tail tendon (2007) J. Biomed. Opt., 12 (2), p. 024011
dc.descriptionLangberg, H., Skovgaard, D., Petersen, L.J., Bulow, J., Kjaer, M., Type-1 collagen turnover in peritendinous connective tissue after exercise determined by microdialysis (1999) J. Physiol., 52, pp. 299-306
dc.descriptionLemm, M., Blake, R.L., Colson, J.P., Ferguson, H., Achilles peritendinitis: a literature review with case report (1992) J. Am. Podiatr. Méd. Assoc., 82 (9), pp. 482-490
dc.descriptionLesic, A., Bumbasirevic, M., Disorders of the Achilles tendon (2004) Curr. Orthop., 18, pp. 63-75
dc.descriptionLiu, S.H., Yang, R.S., Shaikh, R., Lane, J.M., Collagen in tendon, ligament and bone healing (1995) Clin. Orthop. Relat. Res., 318, pp. 265-278
dc.descriptionMaffulli, N., Rupture of the Achilles tendon (1999) J. Bone Joint Surg. Am., 81 (7), pp. 1019-1036
dc.descriptionMagnusson, S.P., Hansen, P., Kjaer, M., Tendon properties in relation to muscular activity and physical training (2003) Scand. J. Med. Sci. Sports, 13, pp. 211-223
dc.descriptionMello, M.L.S., Vidal, B.C., Experimental tendon repair: glycosaminoglycan arrangement in newly synthesized collagen fibers (2003) Cell. Mol. Biol., 49 (4), pp. 579-585
dc.descriptionMilz, S., McNeilly, C., Putz, R., Ralphs, J., Benjamin, M., Fibrocartilages in the extensor tendons of the interphalangeal joints of human toes (1998) Anat. Rec., 252, pp. 264-270
dc.descriptionMilz, S., Regner, F., Putz, R., Benjamin, M., Expression of a wide range of extracellular matrix molecules in the tendon and trochlea of the human superior oblique muscle (2002) Invest. Ophthalmol. Vis. Sci., 43 (5), pp. 1330-1334
dc.descriptionMuller, G., Michel, A., Altenburg, E., Comp (cartilage oligomeric matrix protein) is synthesized in ligament, tendon, meniscus, and cartilage (1998) Connect. Tissue Res., 39, pp. 233-244
dc.descriptionMuttini, A., Mattioli, M., Petrizzi, L., Varasano, V., Sciarrini, C., Russo, V., Mauro, A., Barboni, B., Experimental study on allografts of amniotic epithelial cells in calcaneal tendon lesions of sheep (2010) Vet. Res. Commun., 34 (SUPPL. 1), pp. S117-S120
dc.descriptionNakagaki, W.R., Biancalana, A., Benevides, G.P., Gomes, L., Biomechanical and biochemical properties of chicken calcaneal tendon under effect of age and nonforced active exercise (2007) Connect. Tissue Res., 48, pp. 219-228
dc.descriptionNakagaki, W.R., Pimentel, E.R., Benevides, G.P., Gomes, L., The effect of age and spontaneous exercise on the biomechanical and biochemical properties of chicken superficial digital flexor tendon (2010) Connect. Tissue Res., 51, pp. 265-273
dc.descriptionNaoun, O.K., Dorr, V.L., Allé, P., Sablon, J.C., Benoit, A.M., Exploration of the retinal nerve fiber layer thickness by measurement of the linear dichroism (2005) Appl. Opt., 44 (33), pp. 7074-7082
dc.descriptionNeale, S.L., MacDonald, M.P., Dholakia, K., Krauss, T.F., All-optical control of microfluidic components using from birefringence (2005) Nat. Mater., 4, pp. 530-533
dc.descriptionO'Brien, M., Structure and metabolism of tendons (1997) Scand. J. Med. Sci. Sports, 7, pp. 55-61
dc.descriptionOryan, A., Silver, I.A., Goodship, A.E., Metrenperone enhances collagen turnover and remodeling in the early stages of healing of tendon injury in rabbit (2010) Arch. Orthop. Trauma Surg., 130 (12), pp. 1451-1457
dc.descriptionPetrov, G.I., Shcheslavskiy, V.I., Yakovlev, V.V., Golovan, L.A., Krutkova, E.Y., Fedotov, A.B., Zheltikov, A.M., Stepovich, E.M., Effect of photonic crystal structure on the nonlinear optical anisotropy of birefringent porous silicon (2006) Opt. Lett., 31 (21), pp. 3152-3154
dc.descriptionPimentel, R., Recco, S.M., Graccho, M., Photometric studies on xylidine ponceau-collagen interaction (1981) Cell. Mol. Biol., 27 (4), pp. 347-352
dc.descriptionPimentel, S.B., Carvalho, H.F., Cellular aspects of elastogonesis in the elastic tendon of the chicken wing (2003) Cell Biol. Int., 27, pp. 579-586
dc.descriptionPiez, K.A., Reddi, A.H., Extracellular matrix biochemistry (1984) Molecular and Aggregate Structures of the Collagens, pp. 1-40. , Elsevier, New York, K.A. Piez, A.H. Reddi (Eds.)
dc.descriptionPosey, K.L., Hecht, J.T., The role of cartilage oligomeric matrix protein (COMP) in skeletal disease (2008) Curr. Drug Targets, 9 (10), pp. 869-877
dc.descriptionPurushothaman, K.R., Purushothaman, M., Muntner, P., Lento, P.A., O'Connor, W.N., Sharma, S.K., Fuster, V., Moreno, P.R., Inflammation, neovascularization and intra-plaque hemorrhage are associated with increased reparative collagen content: implication for plaque progression in diabetic atherosclerosis (2011) Vasc. Med., 16 (2), pp. 103-108
dc.descriptionQuinn, T.M., Morel, V., Microstructural modeling of collagen network mechanics and interactions with the proteoglycan gel in articular cartilage (2007) Biomech. Model Mechanobiol., 6 (1-2), pp. 73-82
dc.descriptionRajendra, J., Baxendale, M., Dil Rap, L.G., Rodger, A., Flow linear dichroism to probe binding of aromatic molecules and DNA to single-walled carbon nanotubes (2004) J. Am. Chem. Soc., 126 (36), pp. 11182-11188
dc.descriptionRamirez, F., Rifkin, D.B., Cell signalling events: a view from the matrix (2003) Matrix Biol., 22, pp. 101-107
dc.descriptionRedaelli, A., Vesentini, S., Soncini, M., Vena, P., Mantero, S., Montevecchi, F.M., Possible role decorin glycosaminoglycans in fibril force transfer in relative mature tendons - a computational study from molecular to microstructural level (2003) J. Biomech., 36, pp. 1555-1569
dc.descriptionRees, S.G., Flannery, C.R., Little, C.B., Hughes, C.E., Caterson, B., Dent, C.M., Catabolism of aggrecan, decorin and byglican in tendon (2000) Biochem. J., 350, pp. 181-188
dc.descriptionReinbotha, B.J., Finnisa, M.L., Gibsona, M.A., Sandbergb, L.B., Cleary, E.G., Developmental expression of dermatan sulfate proteoglycans in the elastic bovine nuchal ligament (2000) Matrix Biol., 19, pp. 149-162
dc.descriptionRied, W., Huang, J., Bryson, S., Diaphragm injury and myofibrillar structure induced by resistive loading (1994) J. Appl. Physiol., 76, pp. 176-184
dc.descriptionRieppo, J., Hallikainen, J., Jurvelin, J.S., Kiviranta, I., Helminen, H.J., Hyttinen, M.M., Practical considerations in the use of polarized light microscopy in the analysis of the collagen network in articular cartilage (2007) Microsc. Res. Tech., 71 (4), pp. 279-287
dc.descriptionRouslahti, E., Stretching is good for a cell (1997) Science, 276, pp. 1345-1346
dc.descriptionRufai, A., Benjamin, M., Ralphs, J.R., Development and aging of phenotypically distinct fibrocartilage associated with the rat Achilles tendon (1992) Anat. Embryol., 186, pp. 611-618
dc.descriptionSchnabel, L.V., Lynch, M.E., van der Meulen, M.C., Yeager, A.E., Kornatowski, M.A., Nixon, A.J., Mesenchymal stem cells and insulin-like growth factor-I gene-enhanced mesenchymal stem cells improve structural aspects of healing in equine flexor digitorum superficialis tendons (2009) J. Orthop. Res., 27 (10), pp. 1392-1398
dc.descriptionScott, J.E., Extracellular matrix, supramolecular organization and shape (1995) J. Anat., 187, pp. 259-269
dc.descriptionScott, J.E., Proteoglycan-fibrillar collagen interactions (1998) Biochem. J., 252, pp. 313-323
dc.descriptionScott, P.G., Nakano, T., Dodd, C.M., Isolation and characterization of small proteoglycans from different zones of the porcine knee meniscus (1997) Biochim. Biophys. Acta, 1336, pp. 254-262
dc.descriptionSell, D.R., Monnier, V.M., Aging of long-lived proteins: extracellular matrix (collagens, elastins and proteoglycans) (1995) Handbook of Physiology Section 11: Aging, pp. 1106-1128. , Oxford University Press, New York, E.J. Masoro (Ed.)
dc.descriptionShadwick, R.E., Elastic energy storage in tendons: mechanical differences related to function and age (1990) J. Appl. Physiol., 68, pp. 1033-1040
dc.descriptionShyy, J.Y., Chien, S., Role of integrins in cellular responses to mechanical stress and adhesion (1997) Curr. Opin. Cell. Biol., 9 (5), pp. 707-713
dc.descriptionSilva, D.F.T., Vidal, B.C., Zezell, D.M., Zorn, T.M.T., Nuñez, S.C., Ribeiro, M.S., Collagen birefringence in skin repair in response to red polarized-laser therapy (2006) J. Biomed. Opt., 11, p. 024002
dc.descriptionSmith-Mungo, L.I., Kagan, H.M., Lysyl oxidase: properties, regulation and multiple functions in biology (1997) Matrix Biol., 16, pp. 387-398
dc.descriptionSmith, R.K.W., Heinegård, D., Cartilage oligomeric matrix protein (COMP) levels in digital sheath synovial fluid and serum with tendon injury (2000) Equine Vet. J., 32, pp. 52-58
dc.descriptionSoo, I., Christiansen, J., Marion, D., Courtney, M., Luyckx, V.A., Sequential rupture of triceps and quadriceps tendons in a dialysis patient using hormone supplements. Relaxin affects the in vivo mechanical properties of some but not all tendons in normally menstruating young females (2011) Clin. Nephrol., 75 (1), pp. 20-23
dc.descriptionTallon, C., Maffulli, N., Ewen, S.N., Ruptured Achilles tendons are significantly more degenerated than tendinopathic tendons (2001) Med. Sci. Sports Exerc., 33, pp. 1983-1990
dc.descriptionTibbles, L.A., Woodgett, J.R., The stress-activated protein kinase pathways (1999) Cell. Mol. Life Sci., 55, pp. 1230-1254
dc.descriptionTomiosso, T.C., Nakagaki, W.R., Gomes, L., Hyslop, S., Pimentel, E.R., Organization of collagen bundles during tendon healing in rats treated with L-NAME (2009) Cell Tissue Res., 337, pp. 235-242
dc.descriptionTsuzaki, M., Yamauchi, M., Banes, A.J., Tendon collagens: extracellular matrix composition in shear stress and tensile components of flexor tendons (1993) Connect. Tissue Res., 29 (2), pp. 141-152
dc.descriptionTuite, D.J., Renström, P.A.F.H., O'Brien, M., The aging tendon (1997) Scand. J. Med. Sci. Sports, 7, pp. 72-77
dc.descriptionvan Turnhout, M.C., Kranenbarg, S., van Leeuwen, J.L., Modeling optical behavior of birefringent biological tissues for evaluation of quantitative polarized light microscopy (2009) J. Biomed Opt., 14 (5), p. 054018
dc.descriptionVasanthan, N., Determination of molecular orientation of uniaxially stretched polyamide fibers by polarized infrared spectroscopy: comparison of X-ray diffraction and birefringence methods (2005) Appl. Spectrosc., 59 (7), pp. 897-903
dc.descriptionVidal, B.C., Feixes de colágeno: detecção e quantificação de ordem macromolecular I. Dicroísmo com corantes azóicos sulfatados (Orange G, Xylidine Ponceau e Sirius Red) (1980) Ciência e Cultura, 32 (5), pp. 603-611
dc.descriptionVidal, B.C., Evaluation of carbohydrate role in the molecular order of collagen bundles: microphotometric measurements of textural birefringence (1986) Cell. Mol. Biol., 32, pp. 527-535
dc.descriptionVidal, B.C., Métodos em Biologia Celular (1987) Biologia Celular, pp. 5-34. , Atheneu, Rio de Janeiro, B.C. Vidal, M.L.S. Mello (Eds.)
dc.descriptionVidal, B.C., Cell and extracellular matrix interaction: a feedback theory based on molecular order recognition-adhesion events (1994) Rev. Fac. Ciên. Med. Unicamp., 4, pp. 11-14
dc.descriptionVidal, B.C., Crimp as part of a helice structure (1995) C. R. Acad. Sci. Paris, Sci Ia Vie/Life Sci., 318, pp. 173-178
dc.descriptionVidal, B.C., Image analysis of tendon helical superstructure using interference and polarized light microscopy (2003) Micron, 34, pp. 423-432
dc.descriptionVidal, B.C., Form birefringence as applied to biopolymer and inorganic material supraorganization (2010) Biotech. Histochem., 85, pp. 365-378
dc.descriptionVidal, B.C., Carvalho, H.F., Aggregational state and molecular order of tendons as a function of age (1990) Matrix, 10, pp. 48-57
dc.descriptionVidal, B.C., Mello, M.L., Pimentel, E.R., Polarization microscopy and microspectrophotometry of Sirius Red, Picrosirius and Chlorantine Fast Red aggregates and of their complexes with collagen (1982) Histochem. J., 14 (6), pp. 857-878
dc.descriptionVidal, B.C., Mello, M.L.S., Proteoglycan arrangement in tendon collagen bundles (1984) Cell. Mol. Biol., 30, pp. 195-204
dc.descriptionVidal, B.C., Mello, M.L.S., Supramolecular order following binding of the dichroic birefringent sulfonic dye ponceau SS to collagen fibers (2005) Biopolymers, 78 (3), pp. 121-128
dc.descriptionVidal, B.C., Mello, M.L.S., Structural organization of collagen fibers in chordae tendineae as assessed by optical anisotropic properties and Fast Fourier Transform (2009) J. Struct. Biol., 167, pp. 66-75
dc.descriptionVidal, B.C., Mello, M.L.S., Optical anisotropy of collagen fibers of rat calcaneal tendons: an approach to spatially resolved supramolecular organization (2010) Acta Histochem., 112, pp. 53-61
dc.descriptionVidal, B.C., Mello, M.L.S., Collagen type I amide I band infrared spectroscopy (2011) Micron, 42, pp. 283-289
dc.descriptionVidal, B.C., Mello, M.L.S., Pimentel, E.R., Polarization microscopy and microspectrophotometry of sirius red, picro sirius and chlorantine fast red aggregates and their complexes with collagen (1982) Histochem. J., 14, pp. 857-978
dc.descriptionVidal, B.C., Vilarta, R., Articular cartilage: collagen II-proteoglycan interactions. Availability of reative groups. Variation in birefringence and differences as compared to collagen I (1988) Acta Histochem., 83, pp. 189-205
dc.descriptionVilarta, R., Vidal, B.C., Anisotropic and biochemical properties of tendons modified by exercise and denervation: aggregational state and macromolecular order (1989) Matrix Biol., 9 (1), pp. 55-61
dc.descriptionVogel, K.G., Heinegård, D., Characterization of proteoglycans from adult bovine tendon (1985) J. Biol. Chem., 260, pp. 298-306
dc.descriptionVogel, K.J., Koob, T.J., Structural specialization in tendon under compression (1989) Int. Rev. Cytol., 115, pp. 267-293
dc.descriptionVogel, K.G., Meyers, A.B., Proteins in the tensile region of adult bovine deep flexor tendon (1999) Clin. Orthop. Relat. Res., 367, pp. 344-355
dc.descriptionWhittaker, P., Bouhner, D.R., Perkins, D.G., Cnham, P.B., Quantitative structural analysis of collagen in chordae tendinae and its relation to floppy mitral valves and proteoglycans infiltration (1987) Br. Heart, 57, pp. 264-269
dc.descriptionWiener, O., Die Theorie des Mischkorper fur das Feld der stationaren Stromung erste Abhandlung. Die Mittelwerstaze fur Kraft, Polarization und Energie (1912) Ab. Math. Klas. Kongl. Sach. Gesel. Wiss., 23, pp. 509-604
dc.descriptionWoo, S.L.Y., Hildebrand, K.M.D., Watanabe, N.M.D., Fenwick, J.A.M.D., Papageorgiou, C.D.M.D., Wang, J.H.C., Tissue engineering of ligament and tendon healing (1999) Clin. Orthop. Relat. Res., 367, pp. 312-323
dc.descriptionWoo, S.L.Y., Debski, R.E., Zeminski, J., Abramowitch, S.D., Chan Saw, S.S., Fenwick, J.A., Injury and repair of ligaments and tendons (2000) Annu. Rev. Biomed. Eng., 2, pp. 83-118
dc.languageen
dc.publisher
dc.relationMicron
dc.rightsfechado
dc.sourceScopus
dc.titleBiochemical And Anisotropical Properties Of Tendons
dc.typeArtículos de revistas


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