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在物理和虚拟环境中规避障碍物时个人空间的特征。

Characteristics of personal space during obstacle circumvention in physical and virtual environments.

作者信息

Gérin-Lajoie Martin, Richards Carol L, Fung Joyce, McFadyen Bradford J

机构信息

Center for Interdisciplinary Research in Rehabilitation and Social Integration, Department of Rehabilitation, Faculty of Medicine, Laval University, Quebec, Canada.

出版信息

Gait Posture. 2008 Feb;27(2):239-47. doi: 10.1016/j.gaitpost.2007.03.015. Epub 2007 May 23.

Abstract

It is not known how the flexible protective zone maintained around oneself during locomotion (personal space or PS; see [Gérin-Lajoie M, Richards CL, McFadyen BJ. The negotiation of stationary and moving obstructions during walking: anticipatory locomotor adaptations and preservation of personal space. Motor Control 2005;9:242-69]) is modulated with walking speed, whether both sides of the PS are symmetrical, and whether the circumvention of physical and virtual obstructions elicit the same use of such PS. Personal space was measured in ten adults as they circumvented a cylindrical obstacle that was stationary within their path. Both left and right passes were performed at natural self-selected, slow and fast walking speeds. The same circumvention task was also performed at natural speeds in an immersive virtual environment (VE) replicating the same obstruction scenario. The shape and size of PS were maintained across walking speeds, and a smaller PS was generally observed on the dominant side. The general shape and lateral bias of the PS were preserved in the VE while its size was slightly increased. The systematic behavior across walking speeds and types of environment and the lateral bias suggest that PS is used to control navigation. This study deepens our understanding of normal adaptive walking behavior and has implications for the development of better tools for the assessment and retraining of locomotor capacity in different populations, from people with walking deficits to elite athletes. Since the PS behavior was shown to be robust in the VE used for this study, the virtual reality technology is proposed as a promising platform for the development of such assessment and retraining applications.

摘要

目前尚不清楚在运动过程中围绕自身维持的灵活保护区域(个人空间或PS;见[Gérin-Lajoie M, Richards CL, McFadyen BJ. 行走过程中对静止和移动障碍物的应对:预期性运动适应与个人空间的保持。运动控制2005;9:242 - 69])是如何随步行速度进行调节的,个人空间的两侧是否对称,以及绕过物理和虚拟障碍物是否会引发对该个人空间的相同利用方式。在十名成年人绕过路径中静止的圆柱形障碍物时测量了他们的个人空间。左右两侧的通过均以自然自选、慢速和快速步行速度进行。在模拟相同障碍物场景的沉浸式虚拟环境(VE)中,也以自然速度进行了相同的绕过任务。个人空间的形状和大小在不同步行速度下保持不变,并且通常在优势侧观察到较小的个人空间。个人空间的总体形状和侧向偏差在虚拟环境中得以保留,但其大小略有增加。不同步行速度、环境类型以及侧向偏差方面的系统行为表明,个人空间被用于控制导航。这项研究加深了我们对正常适应性步行行为的理解,并对开发更好的工具以评估和再训练不同人群(从行走有缺陷的人到精英运动员)的运动能力具有重要意义。由于在本研究使用的虚拟环境中个人空间行为表现出稳健性,因此虚拟现实技术被提议作为开发此类评估和再训练应用的一个有前景的平台。

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