Biomedical Engineering Reference
In-Depth Information
102 BIBLIOGRAPHY
[13] Choi, J.B., et al., Zonal changes in the three-dimensional morphology of the chondron under
compression: the relationship among cellular, pericellular, and extracellular deformation in articular
cartilage. J Biomech, 2007. 40 (12): p. 2596-603. DOI: 10.1016/j.jbiomech.2007.01.009
[14] McDevitt, C.A., J. Marcelino, and L. Tucker, Interaction of intact type VI collagen with hyaluro-
nan. FEBS Lett, 1991. 294 (3): p. 167-70. DOI: 10.1016/0014-5793(91)80660-U
[15] Aigner, T., et al., Type X collagen expression in osteoarthritic and rheumatoid articular cartilage.
Virchows Arch B Cell Pathol Incl Mol Pathol, 1993. 63 (4): p. 205-11.
[16] Hardingham, T.E., A.J. Fosang, and J. Dudhia, The structure, function and turnover of aggrecan,
the large aggregating proteoglycan from cartilage. Eur J Clin Chem Clin Biochem, 1994. 32 (4):
p. 249-57.
[17] Roughley, P.J. and E.R. Lee, Cartilage proteoglycans: structure and potential functions. Microsc
Res Tech, 1994. 28 (5): p. 385-97. DOI: 10.1002/jemt.1070280505
[18] Watanabe, H., Y. Yamada, and K. Kimata, Roles of aggrecan, a large chondroitin sulfate proteo-
glycan, in cartilage structure and function. J Biochem, 1998. 124 (4): p. 687-93.
[19] Maroudas, A., H. Muir, and J. Wingham, The correlation of fixed negative charge with gly-
cosaminoglycan content of human articular cartilage. Biochim Biophys Acta, 1969. 177 (3):
p. 492-500.
[20] Maroudas, A.I., Balance between swelling pressure and collagen tension in normal and degenerate
cartilage. Nature, 1976. 260 (5554): p. 808-9.
[21] Flannery, C.R., et al., Articular cartilage superficial zone protein (SZP) is homologous to megakary-
ocyte stimulating factor precursor and is a multifunctional proteoglycan with potential growth-
promoting, cytoprotective, and lubricating properties in cartilage metabolism. Biochem Biophys
Res Commun, 1999. 254 (3): p. 535-41. DOI: 10.1006/bbrc.1998.0104
[22] Boskey, A.L., Current concepts of the physiology and biochemistry of calcification. Clinical Or-
thopaedics & Related Research, 1981(157): p. 225-57.
[23] Poole, A.R., et al., Cartilage macromolecules and the calcification of cartilage matrix. Anat Rec,
1989. 224 (2): p. 167-79.
[24] Pritzker, K.P., P.T. Cheng, and R.C. Renlund, Calcium pyrophosphate crystal deposition in hyaline
cartilage. Ultrastructural analysis and implications for pathogenesis. J Rheumatol, 1988. 15 (5):
p. 828-35.
[25] Heinegard, D. and A. Oldberg, Structure and biology of cartilage and bone matrix noncollagenous
macromolecules. Faseb J, 1989. 3 (9): p. 2042-51.
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