首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >One week of motor adaptation induces structural changes in primary motor cortex that predict long-term memory one year later.
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One week of motor adaptation induces structural changes in primary motor cortex that predict long-term memory one year later.

机译:一周的运动适应会诱发初级运动皮层的结构变化,从而预测一年后的长期记忆。

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摘要

The neural bases of motor adaptation have been extensively explored in human and nonhuman primates. A network including the cerebellum, primary motor cortex, and posterior parietal cortex appears to be crucial for this type of learning. Yet, to date, it is unclear whether these regions contribute directly or indirectly to the formation of motor memories. Here we trained subjects on a complex visuomotor rotation associated with long-term memory (in the order of months) to identify potential sites of structural plasticity induced by adaptation. One week of training led to (1) an increment in local gray matter concentration over the hand area of the contralateral primary motor cortex and (2) an increase in fractional anisotropy in an area underneath this region that correlated with the speed of learning. Moreover, the change in gray matter concentration measured immediately after training predicted improvements in the speed of learning during readaptation 1 year later. Our study suggests that motor adaptation induces structural plasticity in primary motor circuits. In addition, it provides the first piece of evidence indicating that early structural changes induced by motor learning may impact on behavior up to 1 year after training.
机译:运动适应的神经基础已在人类和非人类的灵长类动物中得到了广泛的探索。包括小脑,初级运动皮层和后顶叶皮层在内的网络对于此类学习至关重要。然而,到目前为止,还不清楚这些区域是否直接或间接地促进了运动记忆的形成。在这里,我们训练了与长期记忆相关的复杂的视觉运动(几个月左右),以识别由适应引起的结构可塑性的潜在位点。一周的训练导致(1)对侧初级运动皮层的手部区域局部灰质浓度增加,(2)该区域下方区域与学习速度相关的分数各向异性增加。此外,训练后立即测量的灰质浓度变化预示了一年后重新适应过程中学习速度的提高。我们的研究表明,电动机适应会在初级电动机回路中引起结构可塑性。此外,它提供了第一条证据,表明运动学习引起的早期结构变化可能会在训练后长达一年的时间内对行为产生影响。

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