DocumentCode
2533016
Title
The effect of dynamic muscle stimulation on the musculo-skeletal remodeling
Author
Lam, H. ; Qin, Y.X.
Author_Institution
New York State Univ. Stony Brook, Stony Brook
fYear
2007
fDate
10-11 March 2007
Firstpage
27
Lastpage
28
Abstract
Elucidation of the interactive mechanism between musculoskeletal circulations and bone remodeling is crucial in developing new intervention to prevent bone loss under a microgravity environment. The overall hypothesis is that dynamic muscle stimulation can enhance fluid circulation in bone, regulate osteogenic adaptation, and inhibit bone loss in a functional disuse condition. Using a hindlimb suspension rat model, electro-induced dynamic muscle contraction was induced as replacement of the normal weight-bearing activity of the hindlimb. Dynamic muscle contraction loading at 20 Hz and 50 Hz demonstrated increase of BV/TV, Conn.D, and Tb.N at the metaphyseal regions, when comparing to the hindlimb suspension control. In addition, stimulation at 20 Hz and 50 Hz can also alleviate the reduction of the cross-sectional fiber area. These results demonstrated that dynamic electro-induced muscle contraction can indeed initiate an adaptive response to inhibit bone loss and reduce muscle atrophy under a functional disuse environment.
Keywords
biomechanics; bone; muscle; physiological models; bone loss; fluid circulation; hindlimb suspension rat model; microgravity environment; muscle atrophy; muscle stimulation; musculo-skeletal remodeling; Atrophy; Blood flow; Bones; Electrodes; Fluid dynamics; Fluid flow; Frequency; High level synthesis; Muscles; TV;
fLanguage
English
Publisher
ieee
Conference_Titel
Bioengineering Conference, 2007. NEBC '07. IEEE 33rd Annual Northeast
Conference_Location
Long Island, NY
Print_ISBN
978-1-4244-1033-0
Electronic_ISBN
978-1-4244-1033-0
Type
conf
DOI
10.1109/NEBC.2007.4413263
Filename
4413263
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