经颅直流电刺激
神经调节
神经科学
运动学习
运动皮层
初级运动皮层
心理学
神经学
脑刺激
医学
刺激
作者
Ying Wang,Jixian Wang,Qingfang Zhang,Kewei Xiao,Liang Wang,Qing-Ping Yu,Qing Xie,Mu‐ming Poo,Yunqing Wen
标识
DOI:10.1007/s12264-022-00901-1
摘要
The optimal protocol for neuromodulation by transcranial direct current stimulation (tDCS) remains unclear. Using the rotarod paradigm, we found that mouse motor learning was enhanced by anodal tDCS (3.2 mA/cm2) during but not before or after the performance of a task. Dual-task experiments showed that motor learning enhancement was specific to the task accompanied by anodal tDCS. Studies using a mouse model of stroke induced by middle cerebral artery occlusion showed that concurrent anodal tDCS restored motor learning capability in a task-specific manner. Transcranial in vivo Ca2+ imaging further showed that anodal tDCS elevated and cathodal tDCS suppressed neuronal activity in the primary motor cortex (M1). Anodal tDCS specifically promoted the activity of task-related M1 neurons during task performance, suggesting that elevated Hebbian synaptic potentiation in task-activated circuits accounts for the motor learning enhancement. Thus, application of tDCS concurrent with the targeted behavioral dysfunction could be an effective approach to treating brain disorders.
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