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足部力量产生任务中的双边协同作用。

Bilateral synergies in foot force production tasks.

机构信息

Institute for Kinesiology Research, Science and Research Center, University of Primorska, Garibaldijeva 1, 6000, Koper, Slovenia.

出版信息

Exp Brain Res. 2013 May;227(1):121-30. doi: 10.1007/s00221-013-3494-4. Epub 2013 Apr 9.

Abstract

We analysed the effects of task symmetry during bilateral accurate force production tasks performed by the two feet. In particular, we tested a hypothesis that bilateral deficit would lead to higher indices of synergies defined as co-varied adjustments in the two forces across trials that reduced total force variability. The subjects produced steady-state force followed by a quick force pulse into the target. The two feet could be acting both into plantar flexion and into dorsiflexion (symmetrical tasks), or in opposite directions (asymmetrical task). We used the framework of the uncontrolled manifold hypothesis to quantify two variance components, one of which did not change total force (V UCM), while the other did (V ORT). Synergy indices during the asymmetrical task were higher than in either symmetrical task. The difference was due to higher V UCM (compared to the symmetrical plantar flexion task) or lower V ORT (compared to the symmetrical dorsiflexion task). The synergy index showed a drop (anticipatory synergy adjustment, ASA) starting 100-150 ms prior to the force pulse initiation. The ASA tended to be shorter and of a smaller magnitude for the asymmetrical task. This is the first demonstration of bilateral synergies during accurate force production by the legs. We conclude that bilateral deficit has no or weak effects on two-leg synergies. The results fit the earlier introduced scheme with two groups of neural variables defining average performance of a redundant system and patterns of co-variation among its elemental variables, respectively.

摘要

我们分析了在双脚进行双侧精确力量产生任务时任务对称性的影响。特别是,我们测试了一个假设,即双侧缺陷会导致更高的协同指数,协同被定义为在整个试验中两个力的共同变化调整,从而降低总力变异性。受试者产生稳态力,然后快速将力脉冲进入目标。双脚可以同时向跖屈和背屈(对称任务)或相反方向(不对称任务)施加力。我们使用非控制流形假说的框架来量化两个方差分量,其中一个不改变总力(UCM 方差),另一个则改变(ORT 方差)。不对称任务期间的协同指数高于任何一种对称任务。差异是由于 UCM 方差更高(与对称跖屈任务相比)或 ORT 方差更低(与对称背屈任务相比)。协同指数在力脉冲开始前 100-150 毫秒开始下降(预期协同调整,ASA)。ASA 对于不对称任务往往更短且幅度更小。这是腿部在精确力量产生过程中双侧协同作用的首次证明。我们得出结论,双侧缺陷对双腿协同作用没有或只有微弱影响。结果符合之前提出的方案,该方案有两组神经变量分别定义了冗余系统的平均性能和其元素变量之间的共变模式。

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