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Neuromodulatory Mechanisms Induced by Transcranial Static Magnetic Field Stimulation: Whole-cell Patch-clamp Analysis of Pyramidal Cells Sumiya Shibata 1 , Atsuo Fukuda 2 , Tatsuya Mima 3 1Department of Physical Therapy, Faculty of Rehabilitation, Niigata University of Health and Welfare 2Hamamatsu University School of Medicine 3Graduate School of Core Ethics and Frontier Sciences, Ritsumeikan University Keyword: 非侵襲的脳刺激 , 神経調節 , 脳卒中リハビリテーション , non-invasive brain stimulation , neuromodulation , stroke rehabilitation pp.357-362
Published Date 2025/4/1
DOI https://doi.org/10.11477/mf.188160960770040357
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Abstract

A strong, small, permanent magnet placed on the scalp can inhibit brain function through transcranial static magnetic field stimulation (tSMS). This static magnetic field reduces neuronal excitability by activating Cl channels, thereby regulating cell volume. Understanding the underlying neurophysiological mechanisms and developing new devices will facilitate the clinical application of tSMS, which offers advantages over conventional noninvasive brain stimulation techniques in terms of safety, cost, and ease of use.


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電子版ISSN 1344-8129 印刷版ISSN 1881-6096 医学書院

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