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使用导航双相配对脉冲经颅磁刺激对运动皮层进行高效映射

Efficient Mapping of the Motor Cortex with Navigated Biphasic Paired-Pulse Transcranial Magnetic Stimulation.

作者信息

Pitkänen Minna, Kallioniemi Elisa, Järnefelt Gustaf, Karhu Jari, Julkunen Petro

机构信息

Department of Clinical Neurophysiology, Kuopio University Hospital, P. O. Box 100, 70029 KYS, Kuopio, Finland.

Department of Neuroscience and Biomedical Engineering, Aalto University School of Science, Espoo, Finland.

出版信息

Brain Topogr. 2018 Nov;31(6):963-971. doi: 10.1007/s10548-018-0660-9. Epub 2018 Jul 3.

Abstract

Navigated transcranial magnetic stimulation (nTMS) can be applied to locate cortical muscle representations. Usually, single TMS pulses are targeted to the motor cortex with the help of neuronavigation and by measuring motor evoked potential (MEP) amplitudes from the peripheral muscles. The efficacy of single-pulse TMS to induce MEPs has been shown to increase by applying facilitatory paired-pulse TMS (ppTMS). Therefore, the aim was to study whether the facilitatory ppTMS could enable more efficient motor mapping. Biphasic single-pulse TMS and ppTMS with inter-stimulus intervals (ISIs) of 1.4 and 2.8 ms were applied to measure resting motor thresholds (rMTs) as a percentage of the maximal stimulator output and to determine the cortical representation areas of the right first dorsal interosseous muscle in healthy volunteers. The areas, shapes, hotspots, and center of gravities (CoGs) of the representations were calculated. Biphasic ppTMS with ISI of 1.4 ms resulted in lower rMTs than those obtained with the other protocols (p = 0.001). With ISI of 2.8 ms, rMT was lower than with single-pulse TMS (p = 0.032). The ppTMS mapping was thus performed with lower intensity than when using single-pulse TMS. The areas, shapes, hotspots, and CoGs of the muscle representations were in agreement. Hence, biphasic ppTMS has potential in the mapping of cortical hand representations in healthy individuals as an alternative for single-pulses, but with lower stimulation intensity by utilizing cortical facilitatory mechanism. This could improve application of nTMS in subjects with low motor tract excitability.

摘要

导航经颅磁刺激(nTMS)可用于定位皮质肌肉代表区。通常,在神经导航的帮助下,通过测量外周肌肉的运动诱发电位(MEP)幅度,将单个TMS脉冲靶向运动皮层。通过应用易化性配对脉冲TMS(ppTMS),已证明单脉冲TMS诱发MEP的效能会增加。因此,目的是研究易化性ppTMS是否能实现更有效的运动映射。应用双相单脉冲TMS和刺激间隔(ISI)为1.4和2.8毫秒的ppTMS来测量静息运动阈值(rMT),以最大刺激器输出的百分比表示,并确定健康志愿者右侧第一背侧骨间肌的皮质代表区。计算代表区的面积、形状、热点和重心(CoG)。ISI为1.4毫秒的双相ppTMS导致的rMT低于其他方案获得的rMT(p = 0.001)。ISI为2.8毫秒时,rMT低于单脉冲TMS(p = 0.032)。因此,与使用单脉冲TMS相比,ppTMS映射在更低强度下进行。肌肉代表区的面积、形状、热点和CoG是一致的。因此,双相ppTMS作为单脉冲的替代方法,在健康个体的皮质手部代表区映射中具有潜力,但通过利用皮质易化机制,刺激强度更低。这可以改善nTMS在运动束兴奋性低的受试者中的应用。

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