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活跃肌肉骨骼僵硬度的性别差异。第一部分。膝关节动力学控制测量中的量化。

Gender differences in active musculoskeletal stiffness. Part I. Quantification in controlled measurements of knee joint dynamics.

作者信息

Granata Kevin P, Wilson Sara E, Padua Darin A

机构信息

Motion Analysis and Motor Performance Laboratory, Kluge Children's Rehabilitation Center, University of Virginia, 2270 Ivy Road, Charlottesville, VA 22903, USA.

出版信息

J Electromyogr Kinesiol. 2002 Apr;12(2):119-26. doi: 10.1016/s1050-6411(02)00002-0.

Abstract

Active females demonstrate increased risk for musculoskeletal injuries relative to equivalently-trained males. Although gender differences in factors such as passive laxity, skeletal geometry and kinematics have been examined, the effect of gender on active muscle stiffness has not been reported. Stiffness of the active quadriceps and hamstrings musculature were recorded during isometric knee flexion and extension exertions from twelve male and eleven female subjects. A second-order biomechanical model of joint dynamics was used to quantify stiffness from the transient motion response to an angular perturbation of the lower-leg. Female subjects demonstrated reduced active stiffness relative to male subjects at all torque levels, with levels 56-73% of the males. Effective stiffness increased linearly with the torque load, with stiffness increasing at a rate of 3.3 Nm/rad per unit of knee moment in knee flexion exertions (hamstrings) and 6.6 Nm/rad per unit of knee moment extension exertions (quadriceps). To account for gender differences in applied moment associated with leg mass, regressions analyses were completed that demonstrated a gender difference in the slope of stiffness-versus-knee moment relation. Further research is necessary to identify the cause of the observed biomechanical difference and implications for controlling injury.

摘要

与同等训练水平的男性相比,活跃的女性表现出更高的肌肉骨骼损伤风险。尽管已经研究了诸如被动松弛度、骨骼几何形状和运动学等因素的性别差异,但性别对主动肌肉刚度的影响尚未见报道。记录了12名男性和11名女性受试者在等长膝关节屈伸运动中股四头肌和腘绳肌的主动刚度。使用关节动力学的二阶生物力学模型,根据小腿角扰动的瞬态运动响应来量化刚度。在所有扭矩水平下,女性受试者的主动刚度均低于男性受试者,为男性的56 - 73%。有效刚度随扭矩负荷呈线性增加,在膝关节屈曲运动(腘绳肌)中,刚度以每单位膝关节力矩3.3 Nm/rad的速率增加,在膝关节伸展运动(股四头肌)中,刚度以每单位膝关节力矩6.6 Nm/rad的速率增加。为了考虑与腿部质量相关的施加力矩的性别差异,进行了回归分析,结果表明刚度与膝关节力矩关系的斜率存在性别差异。有必要进行进一步的研究,以确定观察到的生物力学差异的原因及其对控制损伤的影响。

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