等长运动
刺激
医学
物理医学与康复
磁刺激
运动皮层
脑刺激
经颅直流电刺激
初级运动皮层
物理疗法
体育锻炼
神经科学
脑电图
痛阈
心理学
麻醉
慢性疼痛
电动机控制
神经调节
随机对照试验
作者
Yinglin GUAN,Xinxin Lin,Weihong Chen,Xin Wang,Shengxiong Chen,Weiwei Peng
摘要
Exercise and primary motor cortex (M1) stimulation may alleviate pain by enhancing the endogenous pain-inhibitory system, with its efficacy assessed through conditioned pain modulation (CPM). This study examined whether combining exercise with M1-targeted transcranial electrical stimulation enhances CPM more effectively than either intervention alone. Two randomized, sham-controlled experiments were conducted. In Experiment 1 (N = 70), participants completed a 3-min isometric handgrip exercise or quiet rest. In Experiment 2 (N = 140), participants received 20 min of M1-targeted transcranial random noise stimulation with direct current offset (tRNS + DC-offset) or sham stimulation, followed by either exercise or rest. CPM was assessed at baseline, immediately after, and 30 min post-intervention. Results showed that exercise alone did not significantly enhance CPM efficacy. In contrast, M1-targeted tRNS + DC-offset significantly enhanced CPM efficacy at both post-intervention time points. Critically, individuals with low baseline CPM showed greater benefits from the combination of tRNS + DC-offset and exercise compared to either exercise alone or tRNS + DC-offset alone, particularly at 30 min post-intervention. These results highlight the potential of combining motor cortex stimulation with exercise to optimize endogenous pain inhibition, particularly as a personalized, nonpharmacological intervention for individuals with impaired pain modulation.
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