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Error Augmentation Improves Visuomotor Adaptation during a Full-Body Balance Task

机译:错误增强在全身平衡任务中改善了视觉运动适应性

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Visual amplification of kinematic errors has successfully been applied to improve performance for upper limb movements. In this study, we investigated whether visual error augmentation can promote faster adaptation during a full-body balance task. Healthy volunteers controlled a cursor by shifting their weight on the THERA-Trainer coro platform. Two experimental groups and one control group were asked to reach visual targets. For the two experimental groups, the cursor’s deviation from the ideal straight line trajectory was augmented by a gain of 1.5 and 2, respectively, while the control group did not experience visual error amplification (gain of 1). Error augmentation with a gain of 1.5 enhanced the speed and the amount of motor adaptation, while the highest gain might have decreased the stability of adaptation. As visual feedback is commonly used in balance training, our preliminary data suggest that integrating visual error augmentation in postural exercises may facilitate balance control.
机译:运动错误的视觉放大已成功应用于改善上肢运动的表现。在这项研究中,我们调查了视觉误差增强是否可以在全身平衡任务中促进更快的适应性。健康的志愿者通过在THERA-Trainer coro平台上移动其重量来控制光标。要求两个实验组和一个对照组达到视觉目标。对于两个实验组,光标与理想直线轨迹的偏差分别增加了1.5和2,而对照组没有出现视觉误差放大(增益为1)。增益为1.5的误差增加可以提高速度和电机适应性,而最高增益可能会降低适应性的稳定性。由于视觉反馈通常用于平衡训练中,因此我们的初步数据表明,在姿势锻炼中整合视觉误差增加可能有助于平衡控制。

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