神经科学
磁刺激
人脑
神经生理学
限制
皮质(解剖学)
脑刺激
电生理学
神经传递
刺激
经颅交流电刺激
神经元放电
生物神经网络
神经影像学
生物
兴奋性突触后电位
中枢神经系统
运动前神经元活动
运动皮层
大脑皮层
心理学
癫痫
磁共振成像
医学
神经元回路
神经网络
脊髓
突触
大脑定位
病态的
局部场电位
神经元
作者
Marcello Massimini,Angel V. Peterchev,Andreas Vlachos,Ulf Ziemann
标识
DOI:10.1152/physrev.00026.2025
摘要
Transcranial magnetic stimulation (TMS) non-invasively activates the human cortex through the intact skull and is now employed worldwide to interrogate physiological and pathological functions of the human brain, and to treat a variety of neurological and psychiatric brain disorders. Yet, the precise routes from the induced electric field to neuronal excitation including network effects remain not fully resolved, limiting the mechanistic basis of all TMS applications. This review deeply surveys how TMS activates the human cortex. We integrate evidence from physics, biophysics, computational modeling, neurophysiological studies in humans using electromyography, electroencephalography, and epidural spinal recordings, and converging non-human primate, rodent, and cortical-slice studies. Collectively, the data suggest that TMS preferentially depolarizes superficial large-diameter myelinated axons, likely at bends, thereby triggering near-instantaneous synaptic activation of local cortical circuits and the emergence of long-range corticocortical and cortico-subcortical network activity. Through this cascade--axonal excitation, cell and circuit recruitment, and network propagation--TMS provides a versatile probe of excitability, function, and dysfunction across spatial scales, from single axons to distributed human brain networks.
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