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Computational Model for the Underlying Mechanisms Regulating Bone Loss by Mechanical Unloading and Estrogen Deficiency

He GONG1Dong ZHU2( )Ming ZHANG3Xizheng ZHANG4
Department of Engineering Mechanics, Jilin University, Changchun 130025, China
Department of Orthopedic Surgery, No. 1 Hospital of Jilin University, Changchun 130021, China
Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, China
Institute of Medical Equipment, Academy of Military Medical Sciences, Tianjin 300161, China
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Abstract

The objective of this paper is to investigate the different effects of disuse and estrogen deficiency on bone loss and the underlying mechanisms. A mechanical-biological factors coupled computational model was built to simulate different patterns of bone loss induced in female rats by hind limb unloading, ovariectomy, or both in an animal study. A remodeling analysis was performed on a representative cross section of 6 mm2 of cancellous bone in the distal femoral metaphysis of the rats. The BMU activation frequency, the refilling rate, and the principal compressive strain in the state of mechanical unloading and estrogen deficiency were simulated to interpret the underlying mechanisms. Simulated bone loss patterns due to mechanical unloading, estrogen deficiency, or both all corresponded with the experimental observations. The results show that mechanical unloading and estrogen deficiency cause different bone loss patterns; moreover, mechanical unloading induces a greater degree of bone loss than estrogen deficiency, which can lead to improved treatment and prevention strategies for osteoporosis.

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Tsinghua Science and Technology
Pages 540-546

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Cite this article:
GONG H, ZHU D, ZHANG M, et al. Computational Model for the Underlying Mechanisms Regulating Bone Loss by Mechanical Unloading and Estrogen Deficiency. Tsinghua Science and Technology, 2010, 15(5): 540-546. https://doi.org/10.1016/S1007-0214(10)70098-5

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Received: 02 April 2009
Revised: 24 May 2010
Published: 01 October 2010
© Tsinghua University Press 2010