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首页> 外文期刊>NeuroImage >A stereotactic method for image-guided transcranial magnetic stimulation validated with fMRI and motor-evoked potentials.
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A stereotactic method for image-guided transcranial magnetic stimulation validated with fMRI and motor-evoked potentials.

机译:图像引导经颅磁刺激的立体定向方法已通过功能磁共振成像和运动诱发电位验证。

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Transcranial Magnetic Stimulation (TMS) delivers short magnetic pulses that penetrate the skull unattenuated, disrupting neural processing in a noninvasive, reversible way. To disrupt specific neural processes, coil placement over the proper site is critical. Therefore, a neural navigator (NeNa) was developed. NeNa is a frameless stereotactic device using structural and functional magnetic resonance imaging (fMRI) data to guide TMS coil placement. To coregister the participant's head to his MRI, 3D cursors are moved to anatomical landmarks on a skin rendering of the participants MRI on a screen, and measured at the head with a position measurement device. A method is proposed to calculate a rigid body transformation that can coregister both sets of coordinates under realistic noise conditions. After coregistration, NeNa visualizes in real time where the device is located with respect to the head, brain structures, and activated areas, enabling precise placement of the TMS coil over a predefined target region. NeNa was validated by stimulating 5 x 5 positions around the 'motor hotspot' (thumb movement area), which was marked on the scalp guided by individual fMRI data, while recording motor-evoked potentials (MEPs) from the abductor pollicis brevis (APB). The distance between the center of gravity (CoG) of MEP responses and the location marked on the scalp overlying maximum fMRI activation was on average less then 5 mm. The present results demonstrate that NeNa is a reliable method for image-guided TMS coil placement.
机译:经颅磁刺激(TMS)传递短的电磁脉冲,不衰减地穿透颅骨,以无创,可逆的方式破坏神经处理。为了破坏特定的神经过程,将线圈放置在正确的部位非常关键。因此,开发了神经导航仪(NeNa)。 NeNa是使用结构和功能磁共振成像(fMRI)数据指导TMS线圈放置的无框立体定向设备。为了将参与者的头部共同注册到他的MRI,将3D光标移动到屏幕上参与者MRI皮肤渲染的解剖界标上,并使用位置测量设备在头部进行测量。提出了一种计算刚体变换的方法,该方法可以在实际噪声条件下同时套准两组坐标。整合后,NeNa可以实时显示设备相对于头部,大脑结构和激活区域的位置,从而可以将TMS线圈精确地放置在预定的目标区域上。 NeNa通过在“运动热点”(拇指运动区域)周围刺激5 x 5位置来验证,该位置在单个fMRI数据指导下在头皮上进行标记,同时记录外展性短腓骨(APB)的运动诱发电位(MEP) 。 MEP反应的重心(CoG)与头皮上标记的最大fMRI激活位置之间的距离平均小于5毫米。目前的结果表明,NeNa是用于图像引导TMS线圈放置的可靠方法。

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