首页> 外文会议>Neural Engineering, 2009. NER '09 >Precise coil positioning system using multi-articular arm for location of stimulated brain area in transcranial magnetic stimulation
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Precise coil positioning system using multi-articular arm for location of stimulated brain area in transcranial magnetic stimulation

机译:使用多关节臂的精确线圈定位系统在经颅磁刺激中定位受刺激的大脑区域

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We developed a precise coil positioning system for determining stimulated sites in transcranial magnetic stimulation (TMS) by using a multi-articular mechanical arm. A figure-of-eight coil used in TMS can induce a focal electric field beneath the coils center in the cortex; therefore, the point on the cortex beneath the center of the figure-of-eight coil has been conventionally regarded as a stimulating site. However, a stimulating site determined in this manner is not believed to be plausible, because the electric field induced in TMS is dispersed over the brain vectorially. Our system was developed on the basis of the cortical structure of the brain cortex and the direction of the induced electric field. In order to verify the system accuracy, Motor Evoked Potentials (MEPs) elicited by TMS at the hand muscles innervated by the primary motor cortex (M1) were measured as electromyogram (EMG). And functional vectorial map of the excitability of M1 in the resting state was obtained by rotating the stimulation coil at a constant location.
机译:我们开发了一种精确的线圈定位系统,可通过使用多关节机械臂来确定经颅磁刺激(TMS)中的刺激部位。 TMS中使用的八字形线圈可以在皮层中的线圈中心下方感应出一个聚焦电场。因此,通常认为八字形线圈中心下方的皮质上的点是刺激点。然而,以这种方式确定的刺激部位被认为是不合理的,因为在TMS中感应的电场在矢量上分散在大脑上。我们的系统是根据大脑皮质的皮质结构和感应电场的方向开发的。为了验证系统的准确性,将TMS在初级运动皮层(M1)支配的手部肌肉上引起的运动诱发电位(MEP)测量为肌电图(EMG)。通过在恒定位置旋转刺激线圈,获得了静止状态下M1的兴奋性的功能矢量图。

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