Dynamic Coordination Phase and Joint Profiles: Cluster and Fixed-point Shift Techniques

Chulwoo Park
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引用次数: 1

Abstract

This study aims to represent a more preferential bilateral movement template by introducing empirical measures of cluster (Experiment 1) and fixed-point shift (Experiment 2) during the bimanual coordination. We showed how the phase dynamics can be calculated using the cluster method (analysis 1). Relatively stable patterns defined by the cluster process were employed for the fixed-point shift calculation to compare three joint oscillations (wrist, elbow, and shoulder; Analysis 2). The analysis revealed that (i) anti-phase coordination was less stable underlying the cluster phase and amplitude analysis; a significance that was mainly driven by higher radial variability. (ii) The three joint couplings and noise oscillations showed that they were wider for the distal (wrist) than the proximal (shoulder) areas. (iii) Repetition with one joint (i.e., wrist) may be significantly associated with trial effects; thus, using data of pick only one joint (wrist) but collecting data from different (three) joints seems more reliable to be a typical dependent variable for the trial effect. Observations and suggestions derived from this aspect represent how the bilateral movement calculation methods can be applied to measure the type of coordination stability eliminating of the learning effect stemming from numerous trials.
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动态协调相位和关节轮廓:群集和定点移位技术
本研究旨在通过引入聚类(实验1)和定点移动(实验2)的实证测度,构建一个更偏向于双手协调的双边移动模板。我们展示了如何使用聚类方法计算相动力学(分析1)。由聚类过程定义的相对稳定模式被用于定点移位计算,以比较三种关节振荡(手腕、肘部和肩部;分析2).分析表明:(1)在聚类相位和振幅分析的基础上,反相位配位的稳定性较差;这种显著性主要是由较高的径向变率驱动的。(ii)三个关节耦合和噪声振荡显示远端(手腕)比近端(肩膀)区域宽。(iii)一个关节(即手腕)的重复可能与试验效果显著相关;因此,使用只选取一个关节(手腕)的数据而收集不同(三个)关节的数据似乎更可靠,是试验效果的典型因变量。从这方面得出的观察和建议代表了如何应用双侧运动计算方法来测量协调稳定性的类型,消除了大量试验产生的学习效应。
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