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Andersons pediatric cardiology 1984

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  • Section 7 Beyond the Heart

    • 74 Systemic Circulation

      • References

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References Dingemans KP, Teeling P, Lagendijk JH, et al Extracellular matrix of the human aortic media: an ultrastructural histochemical and immunohistochemical study of the adult aortic media Anat Rec 2000;258:1–14 Li DY, Brooke B, Davis EC, et al Elastin is an essential determinant of arterial morphogenesis Nature 1998;393:276–280 Lefevre M, Rucker RB Aorta elastins turnover in normal and hypercholesterolemic Japanese quail Biochim Biophys Acta 1980;630:519– 529 Schapiro SD, Endicott SK, Province MA, et al Marked longevity of human lung parenchymal elastic fibres deduced from prevalence of Daspartate and nuclear weapons-related radiocarbon J Clin Invest 1991;87:1828–1834 Powell JT, Vine N, Crossman M On the accumulation of D-aspartate in elastin and other proteins of the ageing aorta Atherosclerosis 1992;97:201–208 Gibson MA, Hatzinikolas G, Kumaratilake JS, et al Further characterization of proteins associated with elastic fiber microfibrils including the molecular cloning of MAGP-2 (MP25) J Biol Chem 1996;271:1096–1103 Handford PA, Downing AK, Reinhardt DP, et al Fibrillin: from domain structure to supramolecular assembly Matrix Biol 2000;19:457–470 Kielty CM, Sherratt MJ, Shuttleworth CA Elastic fibres J Cell Sci 2002;115:2817–2828 Nakamura T, Lozano PR, Ikeda Y, et al Fibulin5/DANCE is essential for elastogenesis in vivo Nature 2002;415:171–175 10 Yanagisawa H, Davis EC, Starcher BC, et al Fibulin-5 is an elastin-binding protein essential for elastic fibre development in vivo Nature 2002;415:168–171 11 Zheng Q, Davis EC, Richardson JA, et al Molecular analysis of fibulin-5 function during de novo synthesis of elastic fibers Mol Cell Biol 2007;27:1083–1095 12 Chothia C, Jones EY The molecular structure of cell adhesion molecules Annu Rev Biochem 1997;66:823–862 13 Labat-Robert J Cell-matrix interactions, alterations with aging, involvement in angiogenesis Pathol Biol 1998;46:527–533 14 Mayne R Collagenous proteins of blood vessels Arteriosclerosis 1986;6:585–593 15 Burton AC Relation of structure to function of the tissues of the wall of blood vessels Physiol Rev 1954;34:619–642 16 Bergel DH The dynamic elastic properties of the arterial wall J Physiol 1961;156:458–469 17 Bergel DH The static elastic properties of the arterial wall J Physiol 1961;156:445–457 18 Holzapfel GA, Gasser TC, Ogden RW A new constitutive framework for arterial wall mechanics and comparative study of material models J Elasticity 2000;61:1–48 19 Gasser TC, Ogden RW, Holzapfel GA Hyperelastic modelling of arterial layers with distributed collagen fibre orientations J R Soc Interface 2006;3:15–35 20 Zulliger MA, Fridez P, Hayashi K, et al A strain energy function for arteries accounting for wall composition and structure J Biochem 2004;37:989–1000 21 Driessen NJ, Wilson W, Bouten CV, et al A computational model for collagen fibre remodelling in the arterial wall J Theor Biol 2004;226:53–64 22 Jacob MP Extracellular matrix remodeling and matrix metalloproteinases in the vascular wall during aging and in pathological conditions Biomed Pharmacother 2003;57:195–202

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