Effect of tissue maturity on cell viability in load-injured articular cartilage explants.
暂无分享,去创建一个
[1] R. Bombelli,et al. Pathogenesis of Osteoarthritis of the Hip , 1976 .
[2] M. A. Cremer,et al. The cartilage collagens: a review of their structure, organization, and role in the pathogenesis of experimental arthritis in animals and in human rheumatic disease , 1998, Journal of Molecular Medicine.
[3] R. Hinton,et al. Age-associated changes in decorin in rat mandibular condylar cartilage. , 2000, Archives of oral biology.
[4] R. Haut,et al. The extent of matrix damage and chondrocyte death in mechanically traumatized articular cartilage explants depends on rate of loading , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[5] V C Mow,et al. Variations in the intrinsic mechanical properties of human articular cartilage with age, degeneration, and water content. , 1982, The Journal of bone and joint surgery. American volume.
[6] V C Mow,et al. The intrinsic tensile behavior of the matrix of bovine articular cartilage and its variation with age. , 1980, The Journal of bone and joint surgery. American volume.
[7] Albert C. Chen,et al. Compressive properties and function—composition relationships of developing bovine articular cartilage , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[8] D. Saris,et al. The chondrogenic potential of periosteum decreases with age , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[9] B Kurz,et al. Biosynthetic response and mechanical properties of articular cartilage after injurious compression , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[10] C. A. Poole. Articular cartilage chondrons: form, function and failure. , 1997, Journal of anatomy.
[11] W. Horton,et al. Cartilage viability after repetitive loading: a preliminary report. , 2002, Osteoarthritis and cartilage.
[12] G. V. van Osch,et al. The Potency of Culture-Expanded Nasal Septum Chondrocytes for Tissue Engineering of Cartilage , 2001, American journal of rhinology.
[13] Marc Thibault,et al. Cyclic compression of cartilage/bone explants in vitro leads to physical weakening, mechanical breakdown of collagen and release of matrix fragments , 2002, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[14] G E Kempson,et al. The tensile properties of the cartilage of human femoral condyles related to the content of collagen and glycosaminoglycans. , 1973, Biochimica et biophysica acta.
[15] G. Ateshian,et al. An automated approach for direct measurement of two-dimensional strain distributions within articular cartilage under unconfined compression. , 2002, Journal of biomechanical engineering.
[16] P. R. van Weeren,et al. Functional adaptation of equine articular cartilage: the formation of regional biochemical characteristics up to age one year. , 2010, Equine veterinary journal.
[17] C. Archer,et al. The reactions of articular cartilage to experimental wounding: role of apoptosis. , 2000, Arthritis and rheumatism.
[18] G. Lust,et al. Chondrocyte necrosis and apoptosis in impact damaged articular cartilage , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[19] D Stamenović,et al. Confined and unconfined stress relaxation of cartilage: appropriateness of a transversely isotropic analysis. , 1999, Journal of biomechanics.
[20] R W Farndale,et al. A direct spectrophotometric microassay for sulfated glycosaminoglycans in cartilage cultures. , 1982, Connective tissue research.
[21] A. Grodzinsky,et al. Injurious mechanical compression of bovine articular cartilage induces chondrocyte apoptosis. , 2000, Archives of biochemistry and biophysics.
[22] V. Mow,et al. Biphasic creep and stress relaxation of articular cartilage in compression? Theory and experiments. , 1980, Journal of biomechanical engineering.
[23] W. R. Jones,et al. The deformation behavior and mechanical properties of chondrocytes in articular cartilage. , 1999, Osteoarthritis and cartilage.
[24] K. Hruska,et al. In Vitro Generation of Scaffold Independent Neocartilage , 2001, Clinical orthopaedics and related research.
[25] D. E. Ashhurst,et al. Development and ageing of the articular cartilage of the rabbit knee joint: distribution of the fibrillar collagens , 1996, Anatomy and Embryology.
[26] C. Rorabeck,et al. Enhanced cleavage of type II collagen by collagenases in osteoarthritic articular cartilage. , 1997, The Journal of clinical investigation.
[27] D. Howell,et al. The pathogenesis of osteoarthritis. , 1986, Seminars in arthritis and rheumatism.
[28] Sheldon R. Simon,et al. Orthopaedic basic science : biology and biomechanics of the musculoskeletal system , 2000 .
[29] F. Blanco,et al. Osteoarthritis chondrocytes die by apoptosis. A possible pathway for osteoarthritis pathology. , 1998, Arthritis and rheumatism.
[30] M. Adams,et al. How severe must repetitive loading be to kill chondrocytes in articular cartilage? , 2001, Osteoarthritis and cartilage.
[31] E B Hunziker,et al. Matrix and cell injury due to sub‐impact loading of adult bovine articular cartilage explants: effects of strain rate and peak stress , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[32] K. Messner,et al. Maturation-related compressive properties of rabbit knee articular cartilage and volume fraction of subchondral tissue. , 1998, Osteoarthritis and cartilage.
[33] H. Luder. Age changes in the articular tissue of human mandibular condyles from adolescence to old age: A semiquantitative light microscopic study , 1998, The Anatomical record.
[34] E. Thonar,et al. Maturation-related changes in proteoglycans of fetal articular cartilage. , 1981, Archives of biochemistry and biophysics.
[35] H. Roos,et al. Procollagen II C-propeptide in joint fluid: changes in concentration with age, time after knee injury, and osteoarthritis. , 1996, The Journal of rheumatology.
[36] G. Lust,et al. Intercellular signaling as a cause of cell death in cyclically impacted cartilage explants. , 2001, Osteoarthritis and cartilage.
[37] Jeffrey H. Price,et al. Video microscopy to quantitate the inhomogeneous equilibrium strain within articular cartilage during confined compression , 1996, Annals of Biomedical Engineering.
[38] W. Horton,et al. Chondrocyte apoptosis increases with age in the articular cartilage of adult animals , 1998, The Anatomical record.
[39] C. A. Poole. Review. Articular cartilage chondrons: form, function and failure , 1997 .
[40] M. Bhargava,et al. Time, stress, and location dependent chondrocyte death and collagen damage in cyclically loaded articular cartilage , 2003, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[41] G. Lust,et al. Characterization of cartilage metabolic response to static and dynamic stress using a mechanical explant test system. , 1997, Journal of biomechanics.
[42] B. Swoboda,et al. Expression of type VI collagen in normal and osteoarthritic human cartilage. , 1999, Osteoarthritis and cartilage.
[43] R M Aspden,et al. Matrix loss and synthesis following a single impact load on articular cartilage in vitro. , 1997, Biochimica et biophysica acta.
[44] J. Kimura,et al. Biosynthesis of cartilage proteoglycan and link protein by articular chondrocytes from immature and mature rabbits. , 1988, The Journal of biological chemistry.