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质心(COM)和压力中心(COP)的增强反馈调节了安静站立的人体相对于稳定边界的调节。

Augmented feedback of COM and COP modulates the regulation of quiet human standing relative to the stability boundary.

作者信息

Kilby Melissa C, Slobounov Semyon M, Newell Karl M

机构信息

Department of Kinesiology, The University of Georgia, 330 River Rd, Athens, GA 30602, United States.

Department of Kinesiology, The Pennsylvania State University, 276 Recreation Building, University Park, PA 16802, United States.

出版信息

Gait Posture. 2016 Jun;47:18-23. doi: 10.1016/j.gaitpost.2016.03.021. Epub 2016 Apr 7.

Abstract

The experiment manipulated real-time kinematic feedback of the motion of the whole body center of mass (COM) and center of pressure (COP) in anterior-posterior (AP) and medial-lateral (ML) directions to investigate the variables actively controlled in quiet standing of young adults. The feedback reflected the current 2D postural positions within the 2D functional stability boundary that was scaled to 75%, 30% and 12% of its original size. The findings showed that the distance of both COP and COM to the respective stability boundary was greater during the feedback trials compared to a no feedback condition. However, the temporal safety margin of the COP, that is, the virtual time-to-contact (VTC), was higher without feedback. The coupling relation of COP-COM showed stable in-phase synchronization over all of the feedback conditions for frequencies below 1Hz. For higher frequencies (up to 5Hz), there was progressive reduction of COP-COM synchronization and local adaptation under the presence of augmented feedback. The findings show that the augmented feedback of COM and COP motion differentially and adaptively influences spatial and temporal properties of postural motion relative to the stability boundary while preserving the organization of the COM-COP coupling in postural control.

摘要

该实验操纵了全身质心(COM)和压力中心(COP)在前后(AP)和内外侧(ML)方向上运动的实时运动学反馈,以研究年轻成年人安静站立时主动控制的变量。该反馈反映了二维功能稳定边界内的当前二维姿势位置,该边界按其原始大小的75%、30%和12%进行缩放。研究结果表明,与无反馈条件相比,在反馈试验期间,COP和COM到各自稳定边界的距离更大。然而,COP的时间安全裕度,即虚拟接触时间(VTC),在无反馈时更高。对于低于1Hz的频率,COP-COM的耦合关系在所有反馈条件下都表现出稳定的同相同步。对于更高的频率(高达5Hz),在增强反馈的情况下,COP-COM同步性逐渐降低且出现局部适应性变化。研究结果表明,COM和COP运动的增强反馈以不同方式适应性地影响相对于稳定边界的姿势运动的空间和时间特性,同时在姿势控制中保持COM-COP耦合的组织。

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