首页> 美国卫生研究院文献>The Journal of Neurology and Psychopathology >Postural adjustments associated with rapid voluntary arm movements. II. Biomechanical analysis.
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Postural adjustments associated with rapid voluntary arm movements. II. Biomechanical analysis.

机译:与快速自愿手臂运动有关的姿势调整。二。生物力学分析。

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摘要

Normal subjects performed bilaterally symmetric rapid elbow flexions or extensions ("focal movements") while standing. Specific patterns of electromyographic activity in leg and trunk muscles ("associated postural adjustments") were seen for each type of movement. The biomechanical significance of these postural adjustments was analysed by means of the ground reaction forces and motion of the various body segments. Experimental data were compared with that from a theoretical model of the body consisting of a six segment kinetic chain with rigid links. Distinct patterns of the ground reaction forces with elbow flexion were opposite in direction to those seen with elbow extension. Movements of the various body segments were small and specific for a certain focal movement. Dynamic perturbations arising from the arm movement in an anteroposterior direction were found to be compensated by postural adjustments, whereas vertical perturbations were not compensated. The muscular activity acting about different joints in the different movements was found to correlate with the predictions of activity needed to compensate for net joint reaction moments arising from the focal movement. Motion of the various body segments could be understood as resulting from the interplay of the net reaction moments and the net muscular moments at the different joints. Dynamic postural requirements are accomplished by a precise active compensation initiated before the focal movement.
机译:正常受试者站立时进行双侧对称的快速肘部弯曲或伸展(“局灶性运动”)。对于每种运动,在腿部和躯干肌肉中的肌电图活动的特定模式(“相关姿势调整”)都可以看到。通过地面反作用力和各个身体部位的运动,分析了这些姿势调整的生物力学意义。将实验数据与由具有刚性链节的六段动力学链组成的车身理论模型进行了比较。肘部弯曲时地面反作用力的不同模式与肘部拉伸时看到的方向相反。各个身体部位的运动很小,特定于特定的焦点运动。发现由于手臂在前后方向上的运动引起的动态扰动可通过姿势调整得到补偿,而垂直扰动则无法得到补偿。发现在不同运动中作用于不同关节的肌肉活动与补偿因焦点运动引起的净关节反应力矩所需的活动预测相关。各个身体部分的运动可以理解为是由于不同关节处的净反应力矩和净肌力矩的相互作用所致。动态姿势要求是通过在焦点移动之前发起的精确主动补偿来实现的。

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