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首页> 外文期刊>Journal of Cognitive Neuroscience >Direct Current Stimulation over V5 Enhances Visuomotor Coordination by Improving Motion Perception in Humans
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Direct Current Stimulation over V5 Enhances Visuomotor Coordination by Improving Motion Perception in Humans

机译:V5上的直流电刺激通过改善人体的运动知觉增强了视运动协调性。

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The primary aim of this study was to determine the extent to which human MT+/V5, an extrastriate visual area known to mediate motion processing, is involved in visuomotor coordination. To pursue this we increased or decreased the excitability of MT+/V5, primary motor, and primary visual cortex by the application of 7 min of anodal and cathodal transcranial direct current stimulation (tDCS) in healthy human subjects while they were performing a visuomotor tracking task involving hand movements. The percentage of correct tracking movements increased specifically during and immediately after cathodal stimulation, which decreases cortical excitability, only when V5 was stimulated. None of the other stimulation conditions affected visuomotor performance. We propose that the improvement in performance caused by cathodal tDCS of V5 is due to a focusing effect on to the complex motion perception conditions involved in this task. This hypothesis was proven by additional experiments: Testing simple and complex motion perception in dot kinetograms, we found that a diminution in excitability induced by cathodal stimulation improved the subject's perception of the direction of the coherent motion only if this was presented among random dots (complex motion perception), and worsened it if only one motion direction was presented (simple movement perception). Our data suggest that area V5 is critically involved in complex motion perception and identification processes important for visuomotor coordination. The results also raise the possibility of the usefulness of tDCS in rehabilitation strategies for neurological patients with visuomotor disorders.
机译:这项研究的主要目的是确定人MT + / V5(一种已知的介导运动过程的视觉区域)参与视觉运动协调的程度。为了实现这一目标,我们通过在健康的人受试者中执行视觉运动追踪任务的同时,对他们进行7分钟的阳极和阴极经颅直流电刺激(tDCS),增加或减少MT + / V5,初级运动和初级视皮层的兴奋性涉及手部动作。仅在刺激V5时,在阴极刺激期间和之后,正确跟踪运动的百分比会特别增加,这会降低皮质兴奋性。其他刺激条件均不影响运动功能。我们建议,由V5的阴极tDCS引起的性能提高是由于对此任务中涉及的复杂运动感知条件的集中作用所致。该假设通过其他实验得到了证明:在点动图上测试简单和复杂的运动知觉,我们发现,只有在随机点(复杂点)中出现了,阴极刺激引起的兴奋性降低才能改善对象对相干运动方向的知觉。运动感知),如果仅给出一个运动方向(简单的运动感知),则会使其恶化。我们的数据表明,区域V5至关重要地参与了复杂的运动感知和识别过程,对视觉运动协调很重要。结果也增加了tDCS在视觉运动障碍神经病患者康复策略中有用的可能性。

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