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首页> 外文期刊>Journal of Neurophysiology >Supplemental vibrotactile feedback of real-time limb position enhances precision of goal-directed reaching
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Supplemental vibrotactile feedback of real-time limb position enhances precision of goal-directed reaching

机译:实时肢体位置的补充振动反馈增强了目标导向的精度

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摘要

We examined vibrotactile stimulation as a form of supplemental limb state feedback to enhance planning and ongoing control of goal-directed movements. Subjects wore a two-dimensional vibrotactile display on their nondominant arm while performing horizontal planar reaching with the dominant arm. The vibrotactile display provided feedback of hand position such that small hand displacements were more easily discriminable using vibrotactile feedback than with intrinsic proprioceptive feedback. When subjects relied solely on proprioception to capture visuospatial targets, performance was degraded by proprioceptive drift and an expansion of task space. By contrast, reach accuracy was enhanced immediately when subjects were provided vibrotactile feedback and further improved over 2 days of training. Improvements reflected resolution of proprioceptive drift, which occurred only when vibrotactile feedback was active, demonstrating that benefits of vibrotactile feedback are due, in part to its integration into the ongoing control of movement. A partial resolution of task space expansion persisted even when vibrotactile feedback was inactive, demonstrating that training with vibrotactile feedback also induced changes in movement planning. However, the benefits of vibrotactile feedback come at a cognitive cost. All subjects adopted a stereotyped strategy wherein they attempted to capture targets by moving first along one axis of the vibrotactile display and then the other. For most subjects, this inefficient approach did not resolve over two bouts of training performed on separate days, suggesting that additional training is needed to integrate vibrotactile feedback into the planning and online control of goal-directed reaching in a way that promotes smooth and efficient movement.
机译:我们检查了振动触觉刺激,作为一种补充肢体状态反馈的形式,以增强规划和持续控制目标定向运动。受试者在其Nondominant臂上穿着二维振动触发显示器,同时执行水平平面与主导臂到达。振动触觉显示器提供了手势的反馈,使得使用振动反馈比具有内在的丙灭虫反馈更容易区分小手移位。当受试者完全依赖于捕获探测目标目标的原因看起来时,Proprioceptive Drift和Task空间的扩展,性能降低。相比之下,当受试者提供振动反馈时立即提高达到精度,并进一步提高2天培训。改进反映了诸如振动反馈的激活时发生的漂移的分辨率,表明振动反馈的益处是由于其集成到持续控制运动中。即使捕获vibrotactive反馈不活跃,任务空间扩展的部分分辨率仍然存在,展示使用振动反馈的培训也引起运动规划的变化。然而,振动反馈的好处是以认知成本的。所有受试者采用了一种刻板策略的策略,其中他们试图通过沿着振动触觉显示器的一个轴线移动而捕获靶标,然后尝试捕获靶。对于大多数科目来说,这种低效的方法没有在单独的日子里进行的两次培训解析,这表明需要额外的培训,以将vibrotactile反馈整合到目标导向的计划和在线控制,以促进平稳和有效的运动的方式。

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