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Chamay, A.
1
; Tschantz, P.
1
Mechanical influences in bone remodeling: experimental research on Wolff's law
J Biomech
. March 1972;5(2):173-180
Affiliations
1
Clinique Universitaire d'Orthopédie Hôpital Cantonal, Geneva, Switzerland
Abstract
Three (3) complementary in vivo experiments using dog ulnas demonstrated that adaptive hypertrophy of long bones is provoked only by intermittent compressions and not by static compression.
Links
DOI:
10.1016/0021-9290(72)90053-X
PubMed:
5020948
WoS:
A1972L922200006
History
Received: 1971-02-15
Cited Works (9)
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Cited By (91)
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1996
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1981
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1981
Carter DR, Harris WH, Vasu R, Caler WE. The mechanical and biological response of cortical bone to in vivo strain histories. In: Cowin SC, ed.
Mechanical Properties of Bone
. The Joint ASME-ASCE Applied Mechnics, Fluids Engineering and Bioengineering Conference; June 22-24, 1981; Boulder, CO. New York, NY: American Society of Mechical Engineers; 1981:81-92.
1981
Lanyon LE. The measurement and biological significance of bone strain in vivo. In: Cowin SC, ed.
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1981
Cowin SC. Continuum models of the adaptation of bone to stress. In: Cowin SC, ed.
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2001
Goodship AE, Cunningham JL. Pathophysiology of functional adaptation of bone in remodeling and repair in vivo. In: Cowin SC, ed.
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1977
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1985
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1994
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2000
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2003
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1974
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1977
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1979
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1979
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1982
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1982
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1985
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1987
Carter DR. Mechanical loading history and skeletal biology.
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1988
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1989
Kuhn JL, Goldstein SA, Ciarelli MJ, Matthews LS. The limitations of canine trabecular bone as a model for human: a biomechanical study.
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1989
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1991
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1994
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1984
Hart RT, Davy DT, Heiple KG. A computational method for stress analysis of adaptive elastic materials with a view toward applications in strain-induced bone remodeling.
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1996
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1979
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2003
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1985
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2002
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1983
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2000
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2006
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2012
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1998
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1994
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1993
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2009
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2018
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2021
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2006
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1996
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Identifying the Origins of Bone Loss Induced by Transient Muscle Paralysis Using Novel MicroCT Image Registration Techniques
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