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使用连续指向任务揭示的向前直线行走过程中的迭代空间更新

Iterative Spatial Updating During Forward Linear Walking Revealed Using a Continuous Pointing Task.

作者信息

Burkitt James J, Campos Jennifer L, Lyons James L

机构信息

Department of Kinesiology, McMaster University, Hamilton, ON, Canada.

Faculty of Health Sciences, University of Ontario Institute of Technology, Oshawa, ON, Canada.

出版信息

J Mot Behav. 2020;52(2):145-166. doi: 10.1080/00222895.2019.1599807. Epub 2019 Apr 15.

Abstract

The continuous pointing task uses target-directed pointing responses to determine how perceived distance traveled is estimated during forward linear walking movements. To more precisely examine the regulation of this online process, the current study measured upper extremity joint angles and step-cycle kinematics in full vision and no-vision continuous pointing movements. Results show perceptual under-estimation of traveled distance in no-vision trials compared to full vision trials. Additionally, parsing of the shoulder plane of elevation trajectories revealed discontinuities that reflected this perceptual under-estimation and that were most frequently coupled with the early portion of the right foot swing phase of the step-cycle. This suggests that spatial updating may be composed of discrete iterations that are associated with gait parameters.

摘要

连续指向任务利用目标导向的指向反应来确定在向前直线行走运动过程中如何估计感知到的行进距离。为了更精确地研究这一在线过程的调节机制,本研究测量了全视野和无视野连续指向运动中的上肢关节角度和步周期运动学。结果表明,与全视野试验相比,无视野试验中行进距离的感知估计不足。此外,对抬高轨迹的肩平面进行解析发现了不连续性,这些不连续性反映了这种感知估计不足,并且最常与步周期中右脚摆动阶段的早期部分相关联。这表明空间更新可能由与步态参数相关的离散迭代组成。

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