首页> 外文期刊>Acta Neurochirurgica >Robot-assisted image-guided transcranial magnetic stimulation for somatotopic mapping of the motor cortex: a clinical pilot study.
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Robot-assisted image-guided transcranial magnetic stimulation for somatotopic mapping of the motor cortex: a clinical pilot study.

机译:机器人辅助的图像引导经颅磁刺激运动皮层的体位标测:一项临床试验研究。

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PURPOSE: Shape and exact location of motor cortical areas varies among individuals. The exact knowledge of these locations is crucial for planning of neurosurgical procedures. In this study, we have used robot-assisted image-guided transcranial magnetic stimulation (Ri-TMS) to elicit MEP response recorded for individual muscles and reconstruct functional motor maps of the primary motor cortex. METHODS: One healthy volunteer and five patients with intracranial tumors neighboring the precentral gyrus were selected for this pilot study. Conventional MRI and fMRI were obtained. Transcranial magnetic stimulation was performed using a MagPro X100 stimulator and a standard figure-of-eight coil positioned by an Adept Viper s850 robot. The fMRI activation/Ri-TMS response pattern were compared. In two cases, Ri-TMS was additionally compared to intraoperative direct electrical cortical stimulation. RESULTS: Maximal MEP response of the m. abductor digiti minimi was located in an area corresponding to the "hand knob" of the precentral gyrus for both hemispheres. Repeated Ri-TMS measurements showed a high reproducibility. Simultaneous registration of the MEP response for m. brachioradialis, m. abductor pollicis brevis, and m. abductor digiti minimi demonstrated individual peak areas of maximal MEP response for the individual muscle groups. Ri-TMS mapping was compared to the corresponding fMRI studies. The areas of maximal MEP response localized within the "finger tapping" activated areas by fMRI in all six individuals. CONCLUSIONS: Ri-TMS is suitable for high resolution non-invasive preoperative somatotopic mapping of the motor cortex. Ri-TMS may help in the planning of neurosurgical procedures and may be directly used in navigation systems.
机译:目的:运动皮层区域的形状和确切位置因人而异。这些位置的确切知识对于神经外科手术的计划至关重要。在这项研究中,我们已经使用机器人辅助的图像引导经颅磁刺激(Ri-TMS)来引发针对单个肌肉记录的MEP反应并重建主要运动皮层的功能性运动图。方法:选择一名健康志愿者和五名颅内肿瘤邻近中央前回的患者进行这项初步研究。获得了常规MRI和fMRI。经颅磁刺激使用MagPro X100刺激器和Adept Viper s850机器人定位的标准八字形线圈进行。比较了fMRI激活/ Ri-TMS反应模式。在两种情况下,将Ri-TMS与术中直接皮层电刺激相比较。结果:m的最大MEP反应。对于两个半球,数指外展最小肌位于与中央前回的“把手”相对应的区域。重复的Ri-TMS测量显示出高重复性。 m的MEP响应同时注册。臂腕radi外poll波里西斯·布里维斯小指外展肌表现出各个肌肉群最大MEP反应的各个峰面积。 Ri-TMS作图与相应的fMRI研究进行了比较。在所有六个人中,最大的MEP反应区域均通过fMRI定位在“手指轻击”激活区域内。结论:Ri-TMS适用于运动皮层的高分辨率无创术前体位成像。 Ri-TMS可以帮助规划神经外科手术,并且可以直接用于导航系统。

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