Biomedical Engineering Reference
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[17] Steadman, J. R., Rodkey, W. G., and Rodrigo, J. J. (2001). Microfracture:
surgical technique and rehabilitation to treat chondral defects. Clinical
Orthopaedics and Related Research , 391 :362-369.
[18] Mauck, R. L., Nicoll, S. B., Seyhan, S. L., Ateshian, G. A., and Hung, C. T.
(2003). Synergistic action of growth factors and dynamic loading for artic-
ular cartilage tissue engineering. Tissue Engineering , 9 :597-611.
[19] Blunk, T., Sieminski, A. L., Gooch, K. J., Courter, D. L., Hollander, A. P.,
Nahir, A. M., Langer, R., Vunjak-Novakovic, G., and Freed, L. E. (2002).
Differential effects of growth factors on tissue-engineered cartilage. Tissue
Engineering , 8 :73-84.
[20] DiMicco, M. A. and Sah, R. L. (2003). Dependence of cartilage matrix
composition on biosynthesis, diffusion and reaction. Transport in Porous
Media , 50 :57-73.
[21] Dudhia, J. (2005). Aggrecan, aging and assembly in articular cartilage.
Celluar and Molecular Life Sciences , 62 :2241-2256.
[22] Bolis, S., Handley, C. J., and Comper, W. D. (1989). Passive loss of pro-
teoglycan from articular cartilage explants. Biomedica Biochimica Acta,
993 :157-167.
[23] Sandy, J. D., O'Neill, J. R., Ratzlaff, L. C. (1989). Acquisition of
hyaluronate-binding anity in vivo by newly synthesized cartilage pro-
teoglycans. Biochemical Journal, 258 :875-880.
[24] Pottenger, L. A., Webb, J. E., and Lyon, N. B. (1985). Kinetics of extrac-
tion of proteoglycans from human cartilage. Arthritis & Rheumatism , 28 :
323-330.
[25] Sandy, J. D. and Plaas, A. H. K. (1986). Age-related changes in the kinet-
ics of release of proteoglycans from normal rabbit cartilage explants. Jour-
nal of Orthopaedic Research , 4 :263-273.
[26] Maroudas, A., Baylissb, M. T., Uchitel-Kaushanskya, N., Schneidermana,
R., and Gilav, E. (1998). Aggrecan turnover in human articular cartilage:
use of aspartic acid racemization as a marker of molecular age. Archives
of Biochemistry and Biophysics , 350 :61-71.
[27] Barta, E. and Maroudas, A. (2006). A theoretical study of the distribu-
tion of insulin-like growth factor in human articular cartilage. Journal of
Theoretical Biology , 241 :628-638.
[28] Gardiner, B. S., Smith, D. W., Pivonka, P., Grodzinsky, A. J., Frank,
E. H., and Zhang, L. (2007). Solute transport in cartilage undergoing
cyclic deformation. Computer Methods in Biomechanics and Biomedical
Engineering , 10 :265-278.
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