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Control of Movement: Right prefrontal cortex transcranial direct current stimulation enhances multi-day savings in sensorimotor adaptation

机译:运动控制:右前额叶皮层经颅直流电刺激可增加多天的感觉运动适应性节省

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摘要

We have previously reported that visuospatial working memory performance and magnitude of activation in the right dorsolateral prefrontal cortex predict the rate of visuomotor adaptation. Recent behavioral studies suggest that sensorimotor savings, or faster relearning on second exposure to a task, are due to recall of these early, strategic components of adaptation. In the present study we applied anodal transcranial direct current stimulation to right or left prefrontal cortex or left motor cortex. We found that all groups adapted dart throwing movements while wearing prism lenses at the same rate as subjects receiving sham stimulation on day 1. On test day 2, which was conducted a few days later, the right prefrontal and left motor cortex groups adapted faster than the sham group. Moreover, only the right prefrontal group exhibited greater savings, expressed as a greater difference between day 1 and day 2 errors, compared with sham stimulation. These findings support the hypothesis that the right prefrontal cortex contributes to sensorimotor adaptation and savings.>NEW & NOTEWORTHY We have previously reported that visuospatial working memory performance and magnitude of activation in the right dorsolateral prefrontal cortex predict the rate of manual visuomotor adaptation. Sensorimotor savings, or faster adaptation to a previously experienced perturbation, has been recently linked to cognitive processes. We show that facilitating the right prefrontal cortex with anodal transcranial direct current stimulation enhances sensorimotor savings compared with sham stimulation.
机译:我们以前曾报道过,视觉空间工作记忆的表现和右背外侧前额叶皮层的激活程度可以预测视觉运动适应的速度。最近的行为研究表明,感觉运动的节省或第二次接触某项任务会更快地重新学习,这归因于对适应的这些早期,战略性成分的回忆。在本研究中,我们将阳极经颅直流电刺激应用于右或左前额叶皮层或左运动皮层。我们发现,所有组在佩戴棱镜镜片时都以与第1天接受假刺激的受试者相同的速度适应飞镖投掷运动。在几天后进行的第2天测试中,右前额叶皮层和左运动皮层组的适应速度快于假小组。此外,与假刺激相比,只有右前额叶组表现出更大的储蓄,表现为第一天和第二天错误之间的差异更大。这些发现支持以下假设:正确的前额叶皮层有助于感觉运动的适应和节省。> NEW&NOTEWORTHY 我们以前曾报道过,视觉空间工作记忆表现和右前外侧前额叶皮层的激活程度可预测手动视觉调节。节省感觉运动,或更快地适应先前经历的摄动,最近已与认知过程联系在一起。我们显示,与假刺激相比,通过阳极经颅直流电刺激促进右前额叶皮层可增强感觉运动储蓄。

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