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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >The Effects of Visual Feedback Distortion with Unilateral Leg Loading on Gait Symmetry
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The Effects of Visual Feedback Distortion with Unilateral Leg Loading on Gait Symmetry

机译:视觉反馈失真与单侧腿部加载在步态对称上的影响

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Our prior work provides evidence that visual feedback distortion drives an implicit adaptation; a gradual distortion of visual representation of step length modulated subjects' step lengths away from symmetry. To further explore the effect of the visual feedback distortion on unconscious change in step symmetry, we investigated whether such adaptation would occur even in the presence of altered limb mechanics by adding mass to one side of the leg. 26 subjects performed three 8-min trials (weight only, weight plus visual feedback, and weight plus visual feedback distortion) of treadmill walking. During the weight only trial, the subjects wore a 5 lb mass around the right ankle. The modification of limb inertia caused asymmetric gait. The visual feedback showing right and left step length information as bar graphs was displayed on a computer screen. To add visual feedback distortion, we increased the length of one side of the visual bars by 10% above the actual step length, and the visual distortion was implemented for the side that took longer in response to the added mass. We found that even when adjustments were made to unilateral loading, the subjects spontaneously changed their step symmetry in response to the visual distortion, which resulted in a more symmetric gait. This change may be characterized by sensory prediction errors, and our results suggest that visual feedback distortion has a significant impact on gait symmetry regardless of other conditions affecting limb mechanics. A rehabilitation program employing visual feedback distortion may provide an effective way to restore gait symmetry.
机译:我们的上事项提供了证据,即视觉反馈失真驱动隐式适应;步长调制对称的步长调制对象的阶梯长度的视觉表示的逐渐变形。为了进一步探讨视觉反馈失真对步骤对称性的无意识变化的影响,我们研究了是否在通过将质量添加到腿的一侧的改变的肢体力学存在下,这种适应性是如此。 26个受试者进行了三种8分钟的试验(仅限重量,重量加上视觉反馈,重量加上视觉反馈失真)的跑步机行走。在仅重量试验期间,受试者在右侧脚踝周围佩戴5磅的质量。肢体惯性改变引起的不对称步态。显示右侧和左侧步长信息的视觉反馈显示在计算机屏幕上。为了添加视觉反馈失真,我们将视觉杆的一侧的长度增加了10%以上高于实际步长,并且对视觉失真实现了响应于添加质量而花的侧面。我们发现即使在对单侧加载进行调整时,受试者也会自发地改变它们的步骤对称性,响应于视觉失真,这导致了更对称的步态。这种改变可以通过感觉预测误差的特征,并且我们的结果表明,无论影响肢体力学的其他条件如何,视觉反馈失真对步态对称性的显着影响。采用视觉反馈失真的康复程序可以提供恢复步态对称性的有效方法。

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