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Real-time changes in corticospinal excitability related to motor imagery of a force control task

机译:与力控制任务的电动机图像相关的皮质兴奋性的实时变化

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Highlights ? We studied corticospinal excitability during imagined isometric force control tasks. ? MEP amplitude during motor imagery is modulated while increasing the imagined force. ? Significant modulation was confirmed in the agonist muscle after learning. Abstract Objective To investigate real-time excitability changes in corticospinal pathways related to motor imagery in a changing force control task, using transcranial magnetic stimulation (TMS). Methods Ten healthy volunteers learnt to control the contractile force of isometric right wrist dorsiflexion in order to track an on-screen sine wave form. Participants performed the trained task 40 times with actual muscle contraction in order to construct the motor image. They were then instructed to execute the task without actual muscle contraction, but by imagining contraction of the right wrist in dorsiflexion. Motor evoked potentials (MEPs), induced by TMS in the right extensor carpi radialis muscle (ECR) and flexor carpi radialis muscle (FCR), were measured during motor imagery. MEPs were induced at five time points: prior to imagery, during the gradual generation of the imaged wrist dorsiflexion (Increasing phase), the peak value of the sine wave, during the gradual reduction (Decreasing phase), and after completion of the task. The MEP ratio, as the ratio of imaged MEPs to resting-state, was compared between pre- and post-training at each time point. Results In the ECR muscle, the MEP ratio significantly increased during the Increasing phase and at the peak force of dorsiflexion imagery after training. Moreover, the MEP ratio was significantly greater in the Increasing phase than in the Decreasing phase. In the FCR, there were no significant consistent changes. Conclusion Corticospinal excitability during motor imagery in an isometric contraction task was modulated in relation to the phase of force control after image construction. ]]>
机译:强调 ?我们在想象的等距力控制任务期间研究了皮质兴奋性。还在增加想象力的同时调制电动机图像期间的MEP幅度。还学习后,在激动剂肌肉中证实了显着的调节。摘要目的研究改变力控制任务中与电动机图像相关的皮质枢头途径的实时兴奋性变化,使用经颅磁刺激(TMS)。方法学会了十个健康志愿者,以控制等距右侧腕部背包的收缩力,以跟踪屏幕上的正弦波形。参与者用实际的肌肉收缩执行训练有素的任务,以构建电机图像。然后,他们被指示在没有实际肌肉收缩的情况下执行任务,而是通过想象右侧手腕的收缩。在电动机图像期间测量由右伸肌射击肌肉(ECR)和屈肌CARPI肌肉(FCR)引起的TMS引起的电动机诱发电位(MEP)。 MEP在五个时间点诱导:在图像之前,在成像腕部背屈(增加阶段)的逐渐生成期间,在逐渐减少(减小阶段)期间和在完成任务后的正弦波的峰值。在每个时间点的预训练中比较了MEP比率,作为成像MEP与休息状态的比率。结果在ECR肌肉中,MEP比率在增加期间和训练后的背离图像的峰值力下显着增加。此外,在增加的阶段,MEP比率显着更大,而不是降低阶段。在FCR中,没有显着的一致变化。结论在等距收缩任务中的电动机图像期间的皮质兴奋性与图像构造后力控制相对的调节。 ]]>

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