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在人类视觉引导跨越虚拟障碍物的过程中,主导腿的视觉运动转换会影响跟随腿的轨迹。

Visuomotor Transformation for the Lead Leg Affects Trail Leg Trajectories During Visually Guided Crossing Over a Virtual Obstacle in Humans.

作者信息

Hagio Shota, Kouzaki Motoki

机构信息

Laboratory of Neurophysiology, Graduate School of Human and Environmental Studies, Kyoto University, Kyoto, Japan.

出版信息

Front Neurosci. 2020 Apr 23;14:357. doi: 10.3389/fnins.2020.00357. eCollection 2020.

Abstract

When walking around a room or outside, we often need to negotiate external physical objects, such as walking up stairs or stepping over an obstacle. In previous studies on obstacle avoidance, lead and trail legs in humans have been considered to be controlled independently on the basis of visual input regarding obstacle properties. However, this perspective has not been sufficient because the influence of visuomotor transformation in the lead leg on the trail leg has not been fully elucidated due to technical limitations in the experimental tasks of stepping over physical obstacles. In this study, we investigated how visuomotor transformation in the lead leg affected movement trajectories in the trail leg using a visually guided task of crossing over a virtual obstacle. Trials for stepping over a physical obstacle were established followed by visually guided tasks in which cursors corresponding to the subject's lead and trail limb toe positions were displayed on a head-mounted display apparatus. Subjects were instructed to manipulate the cursors so that they precisely crossover a virtual obstacle. In the middle of the trials, the vertical displacement of the cursor only in the lead leg was reduced relative to the actual toe movement during one or two consecutive trials. This visuomotor perturbation resulted in higher elevation not only in the lead limb toe position but also in the trail limb toe trajectories, and then the toe heights returned to the baseline in washout trials, indicating that the visuomotor transformation for obstacle avoidance in the lead leg affects the trail leg trajectory. Taken together, neural resources of limb-specific motor memories for obstacle crossing movements in the lead and trail legs can be shared based on visual input regarding obstacle properties.

摘要

当在房间里走动或在户外行走时,我们常常需要与外部实物进行交互,比如上楼梯或跨过障碍物。在以往关于避障的研究中,基于有关障碍物属性的视觉输入,人们认为人体的前导腿和跟随腿是独立控制的。然而,这种观点并不充分,因为由于跨过实物障碍物的实验任务存在技术限制,前导腿的视觉运动转换对跟随腿的影响尚未得到充分阐明。在本研究中,我们使用跨越虚拟障碍物的视觉引导任务,研究了前导腿的视觉运动转换如何影响跟随腿的运动轨迹。先设定跨过实物障碍物的试验,随后进行视觉引导任务,在头戴式显示设备上显示与受试者前导腿和跟随腿脚趾位置相对应的光标。受试者被要求操纵光标,使其精确跨过虚拟障碍物。在试验过程中,在连续一到两次试验中,仅前导腿的光标垂直位移相对于实际脚趾运动减小。这种视觉运动扰动不仅导致前导腿脚趾位置升高,还导致跟随腿脚趾轨迹升高,然后在洗脱试验中脚趾高度恢复到基线,这表明前导腿避障的视觉运动转换会影响跟随腿的轨迹。综上所述,基于有关障碍物属性的视觉输入,前导腿和跟随腿用于跨越障碍物运动的特定肢体运动记忆的神经资源可以共享。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5202/7191033/e5b49ff36d48/fnins-14-00357-g001.jpg

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