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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Unravelling the Modulation of Intracortical Inhibition During Motor Imagery: An Adaptive Threshold-Hunting Study
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Unravelling the Modulation of Intracortical Inhibition During Motor Imagery: An Adaptive Threshold-Hunting Study

机译:揭示电动机图像期间的内部抑制的调制:自适应阈值狩猎研究

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Motor imagery (MI) is the mental simulation of an action without any apparent muscular contraction. By means of transcranial magnetic stimulation (TMS), few studies revealed a decrease of short-interval intracortical inhibition (SICI) within the primary motor cortex. However, this decrease is ambiguous, as one would expect greater inhibition during MI to prevent overt motor output. The current study investigated the extent of SICI modulation during MI through a methodological and a conceptual reconsideration of (i) the importance of parameters to assess SICI (Exp.1) and (ii) the inhibitory process within the primary motor cortex as an inherent feature of MI (Exp.2). Participants performed two tasks: (1) rest and (2) imagery of isometric abduction of the right index finger. Using TMS, motor evoked potentials were elicited in the right first dorsal interosseous (FDI) muscle. An adaptive threshold-hunting paradigm was used, where the stimulus intensity required to maintain a fixed motor evoked potential amplitude was quantified. To test SICI, we conditioned the test stimulus with a conditioning stimulus (CS) of different intensities. Results revealed an Intensity by Task interaction showing that SICI decreased during MI as compared to rest only for the higher CS intensity (Exp.1). At the lowest CS intensities, a Task main effect revealed that SICI increased during MI (Exp.2). SICI modulation during MI depends critically on the CS intensity. By optimising CS intensity, we have shown that SICI circuits may increase during MI, revealing a potential mechanism to prevent the production of a movement while the motor system is activated. (C) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:电动机图像(MI)是一种动作的精神模拟,没有任何明显肌肉收缩。通过经颅磁刺激(TMS),很少有研究揭示了初级电机皮层内的短间隔内抑制(SICI)的降低。然而,这种减少是模糊的,因为人们期望在MI期间预期更大的抑制,以防止公开的电动机输出。目前的研究通过(i)参数的方法和概念性重新考虑了MI期间SICI调制程度,参数评估SICI(EXP.1)和(ii)主要电机皮层内的抑制过程作为固有特征mi(exp.2)。参与者执行了两项任务:(1)休息和(2)右侧食指等距绑架的图像。使用TMS,在右侧侧孔(FDI)肌肉中引发电机诱发电位。使用自适应阈值狩猎范式,其中量化了保持固定电动机诱发电位幅度所需的刺激强度。为了测试SICI,我们将测试刺激与不同强度的调节刺激(CS)调节。结果表明,任务交互的强度显示MI期间SICI减少,而仅用于休息,仅适用于较高的CS强度(Exp.1)。在最低的CS强度下,任务主要效果显示SICI在MI(EXP.2)期间增加。 MI期间的SICI调制尺寸在CS强度上均致力于CS强度。通过优化CS强度,我们已经示出了SICI电路可能在MI期间增加,揭示了防止在电动机系统被激活时产生运动的潜在机制。 (c)2020年度IBRO。 elsevier有限公司出版。保留所有权利。

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