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健康个体在视觉运动学扰动期间的多试验步态适应性

Multi-Trial Gait Adaptation of Healthy Individuals during Visual Kinematic Perturbations.

作者信息

Luu Trieu Phat, He Yongtian, Nakagome Sho, Nathan Kevin, Brown Samuel, Gorges Jeffrey, Contreras-Vidal Jose L

机构信息

Noninvasive Brain-Machine Interface System Laboratory, Department of Electrical and Computer Engineering, University of HoustonHouston, TX, United States.

出版信息

Front Hum Neurosci. 2017 Jun 20;11:320. doi: 10.3389/fnhum.2017.00320. eCollection 2017.

Abstract

Optimizing rehabilitation strategies requires understanding the effects of contextual cues on adaptation learning. Prior studies have examined these effects on the specificity of split-belt walking adaptation, showing that contextual visual cues can be manipulated to modulate the magnitude, transfer, and washout of split-belt-induced learning in humans. Specifically, manipulating the availability of vision during training or testing phases of learning resulted in differences in adaptive mechanisms for temporal and spatial features of walking. However, multi-trial locomotor training has been rarely explored when using visual kinematic gait perturbations. In this study, we investigated multi-trial locomotor adaptation in ten healthy individuals while applying visual kinematic perturbations. Subjects were instructed to control a moving cursor, which represented the position of their heel, to follow a prescribed heel path profile displayed on a monitor. The perturbations were introduced by scaling all of the lower limb joint angles by a factor of 0.7 (i.e., a gain change), resulting in visual feedback errors between subjects' heel trajectories and the prescribed path profiles. Our findings suggest that, with practice, the subjects learned, albeit with different strategies, to reduce the tracking errors and showed faster response time in later trials. Moreover, the gait symmetry indices, in both the spatial and temporal domains, changed significantly during gait adaptation ( < 0.001). After-effects were present in the temporal gait symmetry index whens the visual perturbations were removed in the post-exposure period ( < 0.001), suggesting adaptation learning. These findings may have implications for developing novel gait rehabilitation interventions.

摘要

优化康复策略需要了解情境线索对适应性学习的影响。先前的研究已经考察了这些影响对分带步行适应性特异性的作用,结果表明情境视觉线索可以被操控,从而调节人类分带诱导学习的幅度、迁移和消退。具体而言,在学习的训练或测试阶段操控视觉的可用性,会导致步行时间和空间特征的适应性机制出现差异。然而,在使用视觉运动学步态扰动时,多试验运动训练很少被探究。在本研究中,我们对十名健康个体在施加视觉运动学扰动时的多试验运动适应性进行了调查。受试者被要求控制一个代表其足跟位置的移动光标,以跟随显示器上显示的规定足跟路径轮廓。通过将所有下肢关节角度缩放0.7倍(即增益变化)来引入扰动,从而在受试者的足跟轨迹和规定路径轮廓之间产生视觉反馈误差。我们的研究结果表明,通过练习,受试者学会了(尽管采用了不同的策略)减少跟踪误差,并在后续试验中表现出更快的反应时间。此外,在步态适应过程中,空间和时间域的步态对称指数均发生了显著变化(<0.001)。在暴露后阶段去除视觉扰动时,时间步态对称指数出现了后效应(<0.001),表明存在适应性学习。这些发现可能对开发新的步态康复干预措施具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e761/5476704/7d9c967bcf74/fnhum-11-00320-g0001.jpg

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