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Modification of Motor Evoked Potentials Caused by Electrical Peripheral Nerve Stimulation in Transcranial Magnetic Stimulation

机译:在经颅磁刺激中由电周围神经刺激引起的电机诱发电位的改变

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Somatosensory cortex receives afferent inputs from skeletal muscles and joints while a voluntary movement is conducted. Although this sensory feedback may regulate the efferent motor control signals generated in the motor cortex, the relationship between the afferent sensory signals and the efferent motor signals is still unclear. In this study, we investigated the relationship between the afferent signals elicited by an electrical stimulus of a peripheral nerve and the efferent signals produced by a transcranial magnetic stimulation (TMS) of the motor cortex. The changes of motor evoked potentials (MEPs) elicited by TMS following an electrical stimulus of a median nerve were observed. The results showed that the MEPs were significantly attenuated when the inter-stimulus interval (ISI) between the electrical stimulus and the TMS was 20 ms, and that the MEPs were significantly enhanced when the ISI was longer than 35 ms. Furthermore, the brain condition which affected the MEPs was evaluated with the somatosensory evoked fields (SEFs) measured with magneto-encephalography (MEG). It was suggested that the activation and direction of the current dipole in the primary somatosensory cortex was related to the effect of the afferent signals on the motor function.
机译:在进行自愿运动的同时,体感皮层从骨骼肌和关节接收传入的输入。尽管该感觉反馈可以调节在运动皮层中产生的传入运动控制信号,但是传入感觉信号和传入运动信号之间的关系仍然不清楚。在这项研究中,我们调查了周围神经电刺激引起的传入信号与经运动皮层经颅磁刺激(TMS)产生的传入信号之间的关系。观察到正中神经电刺激后TMS引起的运动诱发电位(MEP)的变化。结果表明,当电刺激和TMS之间的刺激间隔时间(ISI)为20 ms时,MEP显着减弱;而当ISI大于35 ms时,MEP则显着增强。此外,用磁脑电图(MEG)测量的体感诱发场(SEF)评估了影响MEP的大脑状况。有人认为,初级体感皮层中电流偶极的激活和方向与传入信号对运动功能的影响有关。

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