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An interference effect of observed biological movement on action

机译:观察到的生物运动对动作的干扰作用

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It has been proposed that actions are intrinsically linked to perception and that imagining, observing, preparing, or in any way representing an action excites the motor programs used to execute that same action [1-3]. There is neurophysiological evidence that certain brain regions involved in executing actions are activated by the mere observation of action (the so-called "mirror system;" [4, 5]). However, it is unknown whether this mirror system causes interference between observed and simultaneously executed movements. In this study we test the hypothesis that, because of the overlap between action observation and execution, observed actions should interfere with incongruous executed actions. Subjects made arm movements while observing either a robot or another human making the same or qualitatively different arm movements. Variance in the executed movement was measured as an index of interference to the movement. The results demonstrate that observing another human making incongruent movements has a significant interference effect on executed movements. However, we found no evidence that this interference effect occurred when subjects observed a robotic arm making incongruent movements. These results suggest that the simultaneous activation of the overlapping neural networks that process movement observation and execution infers a measurable cost to motor control. [References: 23]
机译:已经提出,动作本质上与感知相关联,并且想象,观察,准备动作或以任何方式表示动作都会激发用于执行相同动作的运动程序[1-3]。有神经生理学证据表明,仅通过观察动作即可激活参与执行动作的某些大脑区域(所谓的“镜系统” [4,5])。但是,尚不清楚该镜系统是否在观察到的和同时执行的运动之间造成干扰。在这项研究中,我们检验了以下假设:由于动作观察和执行之​​间存在重叠,因此观察到的动作应干扰不一致的执行动作。受试者在观察机器人或其他人进行相同或本质上不同的手臂运动时进行了手臂运动。测量所执行运动的方差,作为对运动的干扰指数。结果表明,观察另一个人做出不一致的动作会对执行动作产生明显的干扰作用。但是,我们没有发现证据表明当受试者观察到机械臂动作不协调时会发生这种干扰。这些结果表明,处理运动观察和执行的重叠神经网络的同时激活会导致运动控制产生可观的成本。 [参考:23]

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