Biomedical Engineering Reference
In-Depth Information
41. Jee W. S. S., Li X. J., Ke H. Z. The skeletal adaptation to mechanical usage in the
rat. Cells and Materials, Supplement 1, 131-142 (1991).
42. Batra G. S., Hainey L., Freemont A. J., Andrew G., Saunders P. T. K., Hoyland J. A.,
Braidman I. P. Evidence for cell-specific changes with age in expression of
estrogen receptor (ER) alpha and beta in bone fractures from men and women.
Journal of Pathology 200 (1): 65-73 (2003).
43. Skerry T. M., Bitensky L., Chayen J., Lanyon L. E. Early strain-related changes
in enzyme-activity in osteocytes following bone loading in vivo. Journal of Bone
Mineral Research 4 (5): 783-788 (1989).
44. Kleinnulend J., Vanderplas A., Semeins C. M., Ajubi N. E., Frangos J. A.,
Nijweide P. J., Burger E. H. Sensitivity of osteocytes to biomechanical stress in
vitro. FASEB Journal 9 (5): 441-445 (1995).
45. Mullender M. G., Huiskes R. Proposal for the regulatory mechanism of Wolff's
law. Journal of Orthopaedic Research 13 (4): 503-512 (1995).
46. Nielsen H. M., Andreassen T. T., Ledet T., Oxlund H. Local injection of TGF-beta
increases the strength of tibial fractures in the rat. Acta Orthopaedica Scandinavica
65 (1): 37-41 (1994).
47. Martin R. B. A theory of fatigue damage accumulation and repair in cortical
bone. Journal of Orthopaedic Research 10 (6): 818-825 (1992).
48. Currey J. D. The effect of porosity and mineral-content on the Young's modulus
of elasticity of compact bone. Journal of Biomechanics 21 (2): 131-139 (1988).
49. Rho J. Y., Ashman R. B., Turner C. H. Young's modulus of trabecular and
cortical bone material—Ultrasonic and microtensile measurements. Journal of
Biomechanics 26 (2): 111-119 (1993).
50. Martin R. B: The usefulness of mathematical-models for bone remodeling.
Yearbook of Physical Anthropology 28, 227-236 (1985).
51. Albright J., Skinner H. Bone: Structural organization and remodeling dynamics.
In The scientific basis of orthopaedics, 2nd ed., ed. Albright J., Brand R., pp. 161-198
East Norwalk, CT: Appleton and Lange (1987).
52. Brockstedt H., Bollerslev J., Melsen F., Mosekilde L. Cortical bone remodeling in
autosomal dominant osteopetrosis: A study of two different phenotypes. Bone
18 (1): 67-72 (1996).
53. Parfitt A. M. Osteonal and hemi-osteonal remodeling: The spatial and temporal
framework for signal traffic in adult human bone. Journal of Cellular Biochemistry
55 (3): 273-286 (1994).
54. Whalen R. T., Carter D. R., Steele C. R. Influence of physical activity on the regu-
lation of bone density. Journal of Biomechanics 21 (10): 825-837 (1988).
55. Bentolila V., Boyce T. M., Fyhrie D. P., Drumb R., Skerry T. M., Schaffler M. B.
Intracortical remodeling in adult rat long bones after fatigue loading. Bone 23
(3): 275-281 (1998).
56. Mori S., Burr D. B. Increased intracortical remodeling following fatigue damage.
Bone 14 (2): 103-109 (1993).
57. Burr D. B., Martin R. B. Calculating the probability that microcracks initiate
resorption spaces. Journal of Biomechanics 26 (4-5): 613-616 (1993).
58. Schaffler M. B., Choi K., Milgrom C. Aging and matrix microdamage accumula-
tion in human compact bone. Bone 17 (6): 521-525 (1995).
59. Brockstedt H., Kassem M., Eriksen E. F., Mosekilde L., Melsen F. Age-related
and sex-related changes in iliac cortical bone mass and remodeling. Bone 14 (4):
681-691 (1993).
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