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Using functional loading to influence bone mass and architecture: objectives, mechanisms, and relationship with estrogen of the mechanically adaptive process in bone

Bone · 1996 · Vol. 18(1) · pp. S37–S43
Lance E. Lanyon
Bone health and osteoporosis researchElasticity and Material ModelingBone Metabolism and DiseasesStrain (injury)Bone massSkeleton (computer programming)Bone remodelingProcess (computing)Biomedical engineeringBiologyComputer scienceAnatomyOsteoporosis

MeSH terms

Adaptation, PhysiologicalBone and BonesEstrogensFemaleHumansStress, MechanicalExerciseBone DensityOsteoporosis, PostmenopausalBone Remodeling

Funding

  • National Aeronautics and Space Administration
  • U.S. Department of Agriculture
Citations
429
FWCI
16.68
field-weighted impact
References
68
Percentile
99%
vs. same field & year
Citations per year
References
Static vs dynamic loads as an influence on bone remodelling
Journal of Biomechanics · 1984 · 877 citations
Regulation of bone formation by applied dynamic loads.
Journal of Bone and Joint Surgery · 1984 · 1,550 citations
The L-Arginine-Nitric Oxide Pathway
New England Journal of Medicine · 1993 · 6,702 citations
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Using functional loading to influence bone mass and architecture: objectives, mechanisms, and relationship with estrogen of the mechanically adaptive process in bone · Scinovex