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健康个体在小脑经颅直流电刺激期间皮质脊髓兴奋性和运动控制的变化。

Changes in Corticospinal Excitability and Motor Control During Cerebellar Transcranial Direct Current Stimulation in Healthy Individuals.

作者信息

Takano Keita, Katagiri Natsuki, Sato Takatsugu, Jin Masafumi, Koseki Tadaki, Kudo Daisuke, Yoshida Kaito, Tanabe Shigeo, Tsujikawa Masahiro, Kondo Kunitsugu, Yamaguchi Tomofumi

机构信息

Department of Physical Therapy, Graduate School of Health Sciences, Yamagata Prefectural University of Health Sciences, 260 Kamiyanagi, Yamagata-shi, Yamagata, 990-2212, Japan.

Department of Rehabilitation Medicine, Tokyo Bay Rehabilitation Hospital, 4-1-1 Yatsu, Narashino-shi, Chiba, 275-0026, Japan.

出版信息

Cerebellum. 2023 Oct;22(5):905-914. doi: 10.1007/s12311-022-01469-2. Epub 2022 Sep 2.

Abstract

Cerebellar transcranial direct current stimulation (ctDCS) modulates the primary motor cortex (M1) via cerebellar brain inhibition (CBI), which affects motor control in humans. However, the effects of ctDCS on motor control are inconsistent because of an incomplete understanding of the real-time changes in the M1 excitability that occur during ctDCS, which determines motor output under regulation by the cerebellum. This study investigated changes in corticospinal excitability and motor control during ctDCS in healthy individuals. In total, 37 healthy individuals participated in three separate experiments. ctDCS (2 mA) was applied to the cerebellar hemisphere during the rest condition or a pinch force-tracking task. Motor-evoked potential (MEP) amplitude and the F-wave were assessed before, during, and after ctDCS, and pinch force control was assessed before and during ctDCS. The MEP amplitudes were significantly decreased during anodal ctDCS from 13 min after the onset of stimulation, whereas the F-wave was not changed. No significant changes in MEP amplitudes were observed during cathodal and sham ctDCS conditions. The MEP amplitudes were decreased during anodal ctDCS when combined with the pinch force-tracking task, and pinch force control was impaired during anodal ctDCS relative to sham ctDCS. The MEP amplitudes were not significantly changed before and after all ctDCS conditions. Motor cortical excitability was suppressed during anodal ctDCS, and motor control was unskilled during anodal ctDCS when combined with a motor task in healthy individuals. Our findings provided a basic understanding of the clinical application of ctDCS to neurorehabilitation.

摘要

小脑经颅直流电刺激(ctDCS)通过小脑脑抑制(CBI)调节初级运动皮层(M1),这会影响人类的运动控制。然而,由于对ctDCS期间M1兴奋性的实时变化理解不完整,ctDCS对运动控制的影响并不一致,而M1兴奋性的实时变化决定了在小脑调节下的运动输出。本研究调查了健康个体在ctDCS期间皮质脊髓兴奋性和运动控制的变化。共有37名健康个体参与了三项独立实验。在静息状态或捏力跟踪任务期间,将2毫安的ctDCS施加于小脑半球。在ctDCS之前、期间和之后评估运动诱发电位(MEP)幅度和F波,并在ctDCS之前和期间评估捏力控制。在阳极ctDCS期间,从刺激开始后13分钟起,MEP幅度显著降低,而F波没有变化。在阴极和假ctDCS条件下,未观察到MEP幅度有显著变化。当阳极ctDCS与捏力跟踪任务相结合时,MEP幅度降低,并且相对于假ctDCS,阳极ctDCS期间捏力控制受损。在所有ctDCS条件之前和之后,MEP幅度没有显著变化。在健康个体中,阳极ctDCS期间运动皮层兴奋性受到抑制,并且当阳极ctDCS与运动任务相结合时,运动控制不熟练。我们的研究结果为ctDCS在神经康复中的临床应用提供了基本认识。

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