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Control of Movement: A locomotor learning paradigm using distorted visual feedback elicits strategic learning

机译:运动控制:使用变形视觉反馈的运动学习范式引发战略学习

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摘要

Distorted visual feedback (DVF) during locomotion has been suggested to result in the development of a new walking pattern in healthy individuals through implicit learning processes. Recent work in upper extremity visuomotor rotation paradigms suggest that these paradigms involve implicit and explicit learning. Additionally, in upper extremity visuomotor paradigms, the verbal cues provided appear to impact how a behavior is learned and when this learned behavior is used. Here, in two experiments in neurologically intact individuals, we tested how verbal instruction impacts learning a new locomotor pattern on a treadmill through DVF, the transfer of that pattern to overground walking, and what types of learning occur (i.e., implicit vs. explicit learning). In experiment 1, we found that the instructions provided impacted the amount learned through DVF, but not the size of the aftereffects or the amount of the pattern transferred to overground walking. Additionally, the aftereffects observed were significantly different from the baseline walking pattern, but smaller than the behavior changes observed during learning, which is uncharacteristic of implicit sensorimotor adaptation. Thus, experiment 2 aimed to determine the cause of these discrepancies. In this experiment, when VF was not provided, individuals continued using the learned walking pattern when instructed to do so and returned toward their baseline pattern when instructed to do so. Based on these results, we conclude that DVF during locomotion results in a large portion of explicit learning and a small portion of implicit learning.>NEW & NOTEWORTHY The results of this study suggest that distorted visual feedback during locomotor learning involves the development of an explicit strategy with only a small component of implicit learning. This is important because previous studies using distorted visual feedback have suggested that locomotor learning relies primarily on implicit learning. This paradigm, therefore, provides a new way to examine a different form of learning in locomotion.
机译:运动过程中的视觉失真反馈(DVF)已被建议通过隐性学习过程在健康个体中形成新的步行模式。上肢视觉运动旋转范式的最新研究表明,这些范式涉及内隐和外显学习。另外,在上肢视觉运动范例中,提供的言语提示似乎会影响行为的学习方式以及何时使用这种学习的行为。在这里,在两个神经功能完好的个体中进行的两个实验中,我们测试了口语教学如何通过DVF影响在跑步机上学习新的运动模式,该模式向地面行走的转移以及发生的学习类型(即内隐学习与外显学习) )。在实验1中,我们发现提供的说明影响了通过DVF学习的数量,但没有影响后效应的大小或转移到地面行走的模式的数量。另外,观察到的后效应与基线行走模式有显着差异,但小于在学习过程中观察到的行为变化,这是隐式感觉运动适应的特征。因此,实验2旨在确定这些差异的原因。在此实验中,当未提供VF时,个体在被指示进行学习时会继续使用学习的步行模式,并在被指示进行学习时返回其基线模式。根据这些结果,我们得出结论,运动过程中的DVF会导致很大一部分的显性学习和一小部分的内隐学习。> NEW&NOTEWORTHY (这项研究的结果表明,运动学习中的视觉反馈会失真)涉及开发仅包含一小部分内隐学习的外显策略。这很重要,因为先前使用失真视觉反馈的研究表明,运动学习主要依赖于内隐学习。因此,这种范例提供了一种检验运动中不同学习形式的新方法。

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