Biomedical Engineering Reference
In-Depth Information
4. Buckwalter, J.A., Cooper, R.R.: Bone structure and function. Instr. Course Lect. 36, 27-48
(1987)
5. Frasca, P., Harper, R.A., Katz, J.L.: Scanning electron microscopy studies of collagen,
mineral and ground substance in human cortical bone. Scan. Electron Microsc. (Pt 3),
339-346 (1981)
6. Robinson, R.A.: Bone tissue: composition and function. Johns Hopkins Med. J. 145(1),
10-24 (1979)
7. Aerssens, J., et al.: Interspecies differences in bone composition, density, and quality:
potential implications for in vivo bone research. Endocrinology 139(2), 663-670 (1998)
8. Glimcher, M.J.: The nature of the mineral component of bone and the mechanism of
calcification. Instr. Course Lect. 36, 49-69 (1987)
9. Wachtel, E., Weiner, S.: Small-angle x-ray scattering study of dispersed crystals from bone
and tendon. J. Bone Miner. Res.: Off. J. Am. Soc. Bone Miner. Res. 9(10), 1651-1655 (1994)
10. Fratzl, P., et al.: Mineral crystals in calcified tissues: a comparative study by SAXS. J. Bone
Miner. Res. 7(3), 329-334 (1992)
11. Landis, W.J., Glimcher, M.J.: Electron diffraction and electron probe microanalysis of the
mineral phase of bone tissue prepared by anhydrous techniques. J. Ultrastruct. Res.
63, 188-223 (1978)
12. Roseberry, H., Hastings, A., Morse, J.: X-ray analysis of bone and teeth. J. Biol. Chem.
90, 395-407 (1931)
13. Posner, A.S.: Crystal chemistry of bone mineral. Physiol. Rev. 49(4), 760-792 (1969)
14. Boskey, A.: Bone mineral crystal size. Osteoporos. Int. 14, S16-S21 (2003)
15. Rey, C., et al.: Hydroxyl groups in bone mineral. Bone 16(5), 583-586 (1995)
16. Loong, C.K., et al.: Evidence of hydroxyl-ion deficiency in bone apatites: an inelastic
neutron-scattering study. Bone 26(6), 599-602 (2000)
17. Nimni, B.S., et al.: Changes in the ratio of non-calcified collagen to calcified collagen in
human vertebrae with advancing age. Connect. Tissue Res. 29(2), 133-140 (1993)
18. Tzaphlidou,
M.: Bone
architecture:
collagen
structure
and
calcium/phosphorus
maps.
J. Biol. Phys. 34(1-2), 39-49 (2008)
19. Yamauchi, M.: The major matrix molecule in mineralized tissues. In: Anderson, J.J.,
Garner, S.C. (eds.) Calcium and Phosphorus in Health and Disease, pp. 127-145. CRC
Press, Boca Raton (1996)
20. Bailey,
A.J.,
Knott,
L.:
Molecular
changes
in
bone
collagen
in
osteoporosis
and
osteoarthritis in the elderly. Exp. Gerontol. 34(3), 337-351 (1999)
21. Eyre, D.R., Dickson, I.R., Van Ness, K.: Collagen cross-linking in human bone and articular
cartilage. Age-related changes in the content of mature hydroxypyridinium residues.
Biochem. J. 252(2), 495-500 (1988)
22. Bunn, H.F., Gabbay, K.H., Gallop, P.M.: The glycosylation of hemoglobin: relevance to
diabetes mellitus. Science 200(4337), 21-27 (1978). (New York)
23. Bailey, A.J., Paul, R.G., Knott, L.: Mechanisms of maturation and ageing of collagen.
Mech. Ageing Dev. 106(1-2), 1-56 (1998)
24. Vashishth,
D.:
Collagen
glycation
and
its
role
in
fracture
properties
of
bone.
J. Musculoskelet. Neuronal Interact. 5(4), 316 (2005)
25. Wang, X.: Age-related changes in the collagen network and toughness of bone. Bone 31(1),
1-7 (2002)
26. Ingram, R.T., et al.: Distribution of noncollagenous proteins in the matrix of adult human
bone: evidence of anatomic and functional heterogeneity. J. Bone Miner. Res. 8(9),
1019-1029 (1993)
27. Mbuyi-Muamba, J.M., Dequeker, J., Gevers, G.: Collagen and non-collagenous proteins in
different mineralization stages of human femur. Acta Anat. (Basel) 134(4), 265-268 (1989)
28. Cowles, E.A., et al.: Mineralization and the expression of matrix proteins during in vivo
bone development. Calcif. Tissue Int. 62(1), 74-82 (1998)
29. Fisher, L.W., Termine, J.D.: Noncollagenous proteins influencing the local mechanisms of
calcification. Clin. Orthop. Relat. Res. 200, 362-385 (1985)
Search WWH ::




Custom Search