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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Selective sensorimotor modulation operates during cognitive representation of movement
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Selective sensorimotor modulation operates during cognitive representation of movement

机译:选择性传感器调制在运动的认知表示期间运行

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Before movement onset, during the reaction time, excitability of M1 is selectively modulated by somatosensory inputs, only in the movement-related muscle. If a similar mechanism operates before the onset of mental movements, then somatosensory afferent inputs are exploited during cognitive representation of movement. We assessed sensorimotor modulation through short latency afferent inhibition (SAI) paradigm before the onset of executed and imagined movements.Participants performed or imagined an abduction of index or little finger, in response to an acoustic signal. SAI was evaluated between a Warning and a Go signal and 100 ms after the Go signal, before the real or expected EMG activity. Results showed a reduction of SAI after the Go signal, in the movement-related muscle, during motor imagery as well as movement execution. There was a positive correlation between the individual degree of sensorimotor modulation during executed and mental movements and between the sensorimotor modulation during mental movements and motor imagery ability. Sensorimotor modulation operates during the cognitive representation of movement with selective disinhibition of the cortical representation of the muscle involved in the task. Sensorimotor modulation mechanisms prior to mental and executed movements likely share overlapping circuits. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:在运动开始之前,在反应时间期间,仅在运动相关肌肉中选择性地调节M1的兴奋性。如果类似机制在心理运动开始前运作,则在运动的认知表示期间阐述了躯体感应感传入投入。我们通过短期延迟传入抑制(SAI)范式评估了感觉调制调制,在执行和想象的运动开始之前。响应于声学信号,进行或想象绑架指数或小指的绑架。在Real或预期的EMG活动之前,在警告和GO信号和100毫秒之间进行评估SAI。结果在运动图像和运动执行期间,在运动相关肌肉中,在运动相关肌肉之后表明了SAI的减少。在执行和心理运动期间的Sensimotor调制之间以及心理运动期间的传感器调制与电动机图像能力之间存在正相关性。传感器调制在运动中的认知表示期间运作,选择性禁止任务所涉及的肌肉的皮质表示。在精神和执行的运动之前的SensorImotor调制机制可能共享重叠电路。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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