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The relationship between the motor system activation during action observation and adaptation in the motor system following repeated action observation

机译:动作观察期间电机系统激活与重复动作观察后电机系统适应之间的关系

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Repeated action observation has been shown to alter the cortical representation of the observed movement in the motor system. This change in cortical representation is thought to reflect a motor adaptation to observational training (observational training effect). One factor that may impact the observational training effect is the degree of motor system activation that occurs during the observation of the action (i.e., individual differences in the responsiveness of the motor system during action observation). The present study was conducted to test this hypothesis by assessing the relationship between the change in motor system activity during action observation and the change in cortical representation of action following repeated action observation. To this end, transcranial magnetic stimulation (TMS) was used to evoke contractions of thumb muscles in two different protocols: 1) during the observation of thumb movements to assess the responsiveness of each individual's corticospinal system during action observation; and, 2) after the observation of 1800 thumb movements to assess the amount of adaptation in the representation of the thumb following repeated action observation. The key finding was the significant positive relationship between the level of corticospinal system activation during action observation and the amount of change in the direction of TMS evoked thumb movements. These data support the hypothesized relationship between motor system activation during action observation and the motor systems adaptation following observational training. They are also consistent with the notion that a common neural mechanism underlies these effects.
机译:重复动作观察已显示可改变在电机系统中观察到的运动的皮层表示。皮质表示的这种变化被认为反映了运动对观察训练的适应性(观察训练效果)。可能影响观察训练效果的一个因素是在观察动作过程中发生的运动系统激活程度(即,在观察运动过程中,运动系统的响应能力存在个体差异)。通过评估动作观察期间运动系统活动的变化与重复动作观察后动作的皮质表示的变化之间的关系,进行了本研究以检验该假设。为此,采用经颅磁刺激(TMS)引起拇指肌肉收缩的两种不同方案:1)在观察拇指运动期间,以评估动作观察过程中每个个体的皮质脊髓系统的反应; 2)在观察了1800次拇指运动之后,在重复进行动作观察之后评估拇指表示的适应量。关键发现是动作观察期间皮质脊髓系统激活水平与TMS诱发拇指运动方向变化量之间显着正相关。这些数据支持了动作观察过程中的运动系统激活与观察训练后的运动系统适应之间的假设关系。它们还与一种常见的神经机制是这些作用的基础这一观点相一致。

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