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人类在多障碍物环境中的运动:由于视野限制导致策略改变。

Human locomotion through a multiple obstacle environment: strategy changes as a result of visual field limitation.

机构信息

Department of Information and Computing Sciences, Utrecht University, PO Box 80.089, 3508TB, Utrecht, The Netherlands.

出版信息

Exp Brain Res. 2011 Jul;212(3):449-56. doi: 10.1007/s00221-011-2757-1. Epub 2011 Jun 18.

Abstract

This study investigated how human locomotion through an obstacle environment is influenced by visual field limitation. Participants were asked to walk at a comfortable pace to a target location while avoiding multiple vertical objects. During this task, they wore goggles restricting their visual field to small (S: 40°×25°), medium (M: 80°×60°), large (L: 115°×90°), or unlimited (U) visual field sizes. Full-body motion capture was used to extract for each trial the mean speed, pathlength, mean step width, magnitude of head rotation and head mean angular speed. The results show that compared with the U condition, the M and L conditions caused participants to select a wider path around the obstacles without slowing down or altering step width. However, the S condition did slow down the participants, and increased both their step width and path length. We conclude that only for the S condition, balancing problems were substantial enough to spend more energy associated with increased step width. In all cases, participants choose to optimize safety (collision avoidance) at the cost of spending more energy.

摘要

本研究探讨了人类在障碍物环境中的运动如何受到视野限制的影响。参与者被要求以舒适的速度走向目标位置,同时避开多个垂直障碍物。在这项任务中,他们戴着限制视野的护目镜,视野大小分别为小(S:40°×25°)、中(M:80°×60°)、大(L:115°×90°)或无限制(U)。全身运动捕捉用于从每个试验中提取平均速度、路径长度、平均步幅、头部旋转幅度和头部平均角速度。结果表明,与 U 条件相比,M 和 L 条件使参与者在不减速或改变步幅的情况下选择更宽的障碍物周围路径。然而,S 条件确实使参与者减速,并增加了他们的步幅和路径长度。我们的结论是,只有在 S 条件下,平衡问题才足够严重,以至于要花费更多与增加步幅相关的能量。在所有情况下,参与者都选择以牺牲更多能量为代价来优化安全性(避免碰撞)。

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