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姿势控制系统适度扰动后,神经肌肉控制时间结构的改变而非节段间协调性的改变,解释了稳定图规律性的改变。

Changed Temporal Structure of Neuromuscular Control, Rather Than Changed Intersegment Coordination, Explains Altered Stabilographic Regularity after a Moderate Perturbation of the Postural Control System.

作者信息

Wachholz Felix, Kockum Tove, Haid Thomas, Federolf Peter

机构信息

Department of Sport Science, University of Innsbruck, 6020 Innsbruck, Austria.

出版信息

Entropy (Basel). 2019 Jun 21;21(6):614. doi: 10.3390/e21060614.

Abstract

Sample entropy (SaEn) applied on center-of-pressure (COP) data provides a measure for the regularity of human postural control. Two mechanisms could contribute to altered COP regularity: first, an altered temporal structure (temporal regularity) of postural movements (H1); or second, altered coordination between segment movements (coordinative complexity; H2). The current study used rapid, voluntary head-shaking to perturb the postural control system, thus producing changes in COP regularity, to then assess the two hypotheses. Sixteen healthy participants (age 26.5 ± 3.5; seven females), whose postural movements were tracked via 39 reflective markers, performed trials in which they first stood quietly on a force plate for 30 s, then shook their head for 10 s, finally stood quietly for another 90 s. A principal component analysis (PCA) performed on the kinematic data extracted the main postural movement components. Temporal regularity was determined by calculating SaEn on the time series of these movement components. Coordinative complexity was determined by assessing the relative explained variance of the first five components. H1 was supported, but H2 was not. These results suggest that moderate perturbations of the postural control system produce altered temporal structures of the main postural movement components, but do not necessarily change the coordinative structure of intersegment movements.

摘要

应用于压力中心(COP)数据的样本熵(SaEn)为人体姿势控制的规律性提供了一种度量。两种机制可能导致COP规律性改变:第一,姿势运动的时间结构(时间规律性)改变(H1);第二,节段运动之间的协调性改变(协调复杂性;H2)。当前研究采用快速、自主的摇头动作来干扰姿势控制系统,从而使COP规律性产生变化,进而评估这两种假设。16名健康参与者(年龄26.5±3.5岁;7名女性),其姿势运动通过39个反光标记进行跟踪,他们进行了如下试验:首先在测力板上安静站立30秒,然后摇头10秒,最后再安静站立90秒。对运动学数据进行主成分分析(PCA)提取主要的姿势运动成分。通过计算这些运动成分时间序列的样本熵来确定时间规律性。通过评估前五个成分的相对解释方差来确定协调复杂性。H1得到支持,但H2未得到支持。这些结果表明,姿势控制系统的适度干扰会导致主要姿势运动成分的时间结构改变,但不一定会改变节段间运动的协调结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3501/7515107/1848681b3867/entropy-21-00614-g001.jpg

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