首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Effects of muscular activation patterns on the ankle joint stabilization: An investigation under different Degrees of Freedom
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Effects of muscular activation patterns on the ankle joint stabilization: An investigation under different Degrees of Freedom

机译:肌肉激活方式对踝关节稳定性的影响:不同自由度下的一项研究

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摘要

Altered biomechanical demands of a stabilization task lead to specific changes in coordination patterns among the involved muscles. The objective of this work was to investigate the effects of increased Degrees of Freedom (DoF) of an external object on the stabilization process of the ankle joint in a voluntary force production task. Four muscles (vastus medialis, VM; tibialis anterior, TA; peroneus longus, PL; gastrocnemius medialis, GM) were recorded using surface electromyography and synchronized to dynamometric data. The subject's task was to exert force against the external object by performing a knee extension under 0, 1 or 3 DoF. Forces were measured using three dimensional force transducers and temporal coordination was assessed using the cross-correlation function (CCF). While the force decreased with increasing DoF the muscles showed a selective gain scaling in order to stabilize the ankle joint. Muscles fulfilling mainly stabilizing functions (TA and PL) tended to increase their activities, while the muscles with motor functions either decreased (GM) or increased (VM). The CCF revealed different intermuscular coordination strategies depending on the environmental condition, showing an advanced phasing in the ankle stabilizing PL in unstable environmental conditions (3 DoF). Nevertheless, the overall sequence of muscle activation was preserved. It is concluded that the process of joint stabilization is controlled in dependency of the status of the external system. The associated neuromuscular system adjustments underline the role of movement coordination in the stabilization process.
机译:稳定任务改变的生物力学要求导致所涉及的肌肉之间的协调模式发生特定变化。这项工作的目的是研究在自愿部队生产任务中外部物体的自由度(DoF)增加对踝关节稳定过程的影响。使用表面肌电图记录四只肌肉(内侧血管,VM;胫前肌,TA;腓骨长肌,PL;腓肠肌,GM),并与测力数据同步。对象的任务是通过在0、1或3自由度下进行膝盖伸展来对外部物体施加力量。使用三维力传感器测量力,并使用互相关函数(CCF)评估时间协调性。当力随着DoF的增加而减小时,肌肉表现出选择性的增益缩放,以稳定踝关节。具有主要稳定功能(TA和PL)的肌肉倾向于增加其活动,而具有运动功能的肌肉则可以减少(GM)或增加(VM)。 CCF根据环境条件显示了不同的肌肉间协调策略,显示了在不稳定的环境条件下(3 DoF)踝关节稳定PL的高级阶段。然而,保留了肌肉激活的整体顺序。结论是,联合稳定的过程是根据外部系统的状态来控制的。相关的神经肌肉系统调整强调了运动协调在稳定过程中的作用。

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