Biomedical Engineering Reference
In-Depth Information
calcium homeostasis in eleven normal subjects. Journal of Bone Mineral Research
13 (10): 1594-1601 (1998).
4. Suominen H. Bone-mineral density and long-term exercise—An overview of
cross-sectional athlete studies. Sports Medicine 16 (5): 316-330 (1993).
5. Glucksmann A. Studies on bone mechanics in vitro. Anatomical Record 72: 97-115
(1938).
6. Bassett C. A. L., Becker R. O. Generation of electric potentials by bone in
response to mechanical stress. Science 137 (3535): 1063-1064 (1962).
7. Shamos M. H., Shamos M. I., Lavine L. S. Piezoelectric effect in bone. Nature
197 (486): 81 (1963).
8. Justus R., Luft J. H. A mechanochemical hypothesis for bone remodeling
induced by mechanical stress. Calcified Tissue Research 5 (3): 222-235 (1970).
9. Cowin S. C. Adaptive elasticity. Bulletin of the Australian Mathematical Society
26 (1): 57-80 (1982).
10. Qin Q. H., Ye J. Q. Thermoelectroelastic solutions for internal bone remodeling
under axial and transverse loads. International Journal of Solids and Structures
41 (9-10): 2447-2460 (2004).
11. Cowin S. C. The mechanical and stress adaptive properties of bone. Annals of
Biomedical Engineering 11 (3-4): 263-295 (1983).
12. Frost H. M. Skeletal structural adaptations to mechanical usage (SATMU).
1.  Redefining Wolff law—The bone modeling problem. Anatomical Record
226 (4): 403-413 (1990).
13. Frost H. M. Skeletal structural adaptations to mechanical usage (SATMU).
2.  2. Redefining Wolff law—The remodeling problem. Anatomical Record 226 (4):
414-422 (1990).
14. Cowin S. C., Hegedus D. H. Bone remodeling I: Theory of adaptive elasticity.
Journal of Elasticity 6 (3): 313-326 (1976).
15. Hegedus D. H., Cowin S. C. Bone remodeling II: small strain adaptive elasticity.
Journal of Elasticity 6 (4): 337-352 (1976).
16. Cowin S. C., Nachlinger R. R. Bone remodeling III: Uniqueness and stability in
adaptive elasticity theory. Journal of Elasticity 8 (3): 285-295 (1978).
17. Frost H. M. Dynamics of bone remodeling. In Bone biodynamics, ed. Frost H. M.
Boston: Little and Brown, p. 316 (1964).
18. Currey J. D. Differences in the blood-supply of bone of different histological
types. Quarterly Journal of Microscopical Science 101 (3): 351-370 (1960).
19. Woo S. L. Y., Kuei S. C., Amiel D., Gomez M. A., Hayes W. C., White F. C., Akeson
W. H. The effect of prolonged physical training on the properties of long-bone—
A study of Wolff's law. Journal of Bone and Joint Surgery, American vol. 63 (5):
780-787 (1981).
20. Uhthoff H. K., Jaworski Z. F. G. Bone loss in response to long-term immobiliza-
tion. Journal of Bone and Joint Surgery, British vol. 60 (3): 420-429 (1978).
21. Jaworski Z. F. G., Liskovakiar M., Uhthoff H. K. Effect of long-term immobiliza-
tion on the pattern of bone loss in older dogs. Journal of Bone and Joint Surgery,
British vol. 62 (1): 104-110 (1980).
22. Goodman M. A., Cowin S. C. Continuum theory for granular materials. Archive
for Rational Mechanics and Analysis 44 (4): 249-266 (1972).
23. Cowin S. C., Van Buskirk W. C. Surface bone remodeling induced by a medullary
pin. Journal of Biomechanics 12 (4): 269-276 (1979).
Search WWH ::




Custom Search