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首页> 外文期刊>Advances in Experimental Medicine and Biology >Frontal Cortex Activation During Electrical Muscle Stimulation as Revealed by Functional Near-Infrared Spectroscopy
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Frontal Cortex Activation During Electrical Muscle Stimulation as Revealed by Functional Near-Infrared Spectroscopy

机译:电肌刺激期间的正面皮质活化,其功能近红外光谱透露

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Electrical muscle stimulation (EMS) is a widely applied technique in clinical medicine and sports training to generate muscle contractions by activating peripheral motor axons [7]. Although less well studied, EMS can also activate peripheral sensory axons that send proprioceptive and pain signals from the muscle to the sensory, motor, and association cortices, thereby increasing cortical excitability and activation [1, 2, 6]. For example, Blickenstorfer et al. [1] used fMRI to measure cortical and subcortical activation responses during EMS of the wrist extensors/flexors, and showed an activation pattern comprising the contralateral primary motor and somatosensory cortex, and premotor cortex; the ipsilateral cerebellum; bilateral secondary somatosensory cortex, the supplementary motor area, and anterior cingulate cortex. Moreover, Smith et al. [6] showed a relationship between changes in senso-rimotor cortical activation using fMRI and increased current intensity during EMS of the knee extensors, which the authors presumed was related to pain processing.
机译:电肌刺激(EMS)是一种在临床医学和运动训练中的广泛应用的技术,通过激活外围电动机轴突来产生肌肉收缩[7]。虽然研究得不太良好,但EMS还可以激活外围感觉轴突,这些轴突将来自肌肉的疼痛和疼痛信号发送到感官,电动机和关联皮质,从而增加皮质兴奋性和激活[1,2,6]。例如,Blickenstorfer等人。 [1]使用FMRI测量手腕伸肌/屈肌的EMS期间测量皮质和皮质激活响应,并显示了包含对侧初级电动机和躯体感应皮层的激活模式,并Premotor Cortex;同侧小脑;双侧次生躯体感觉皮质,补充电机面积和前铰接皮质。此外,史密斯等人。 [6]显示使用FMRI的Senso-Rimotor皮质激活的变化与膝关节延伸部的EMS期间的电流强度增加的关系,该作者推测与疼痛加工有关。

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