TY - JOUR
T1 - Muscle force and its role in joint dynamic stability
AU - An, Kai Nan
PY - 2002/10/1
Y1 - 2002/10/1
N2 - The study of loading in the muscle is essential to better understanding the adaptation and plasticity of the muscle under pathologic or surgicallyaltered conditions. Muscle recruitment and muscle force are determined by the muscle's mechanical function as a joint mover and a joint stabilizer. The coordination of muscle contraction affects joint stability. However, the conditions of the joint passive constraints influence the muscle recruitment. Furthermore, muscle force is regulated based on muscle size, such as the physiologic cross-sectional area, and its physiology, namely, the length-tension and the tensionvelocity relationship. Alterations of these physiologic relationships also will influence the overall mechanical function of the muscle.
AB - The study of loading in the muscle is essential to better understanding the adaptation and plasticity of the muscle under pathologic or surgicallyaltered conditions. Muscle recruitment and muscle force are determined by the muscle's mechanical function as a joint mover and a joint stabilizer. The coordination of muscle contraction affects joint stability. However, the conditions of the joint passive constraints influence the muscle recruitment. Furthermore, muscle force is regulated based on muscle size, such as the physiologic cross-sectional area, and its physiology, namely, the length-tension and the tensionvelocity relationship. Alterations of these physiologic relationships also will influence the overall mechanical function of the muscle.
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U2 - 10.1097/00003086-200210001-00005
DO - 10.1097/00003086-200210001-00005
M3 - Article
C2 - 12394451
AN - SCOPUS:0036809570
SN - 0009-921X
VL - 403
SP - S37-S42
JO - Clinical Orthopaedics and Related Research
JF - Clinical Orthopaedics and Related Research
IS - SUPPL.
ER -