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New coil positioning method for interleaved transcranial magnetic stimulation (TMS)/functional MRI (fMRI) and its validation in a motor cortex study

机译:交错式经颅磁刺激(TMS)/功能性MRI(fMRI)的新线圈定位方法及其在运动皮层研究中的验证

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摘要

Purpose To develop and test a novel method for coil placement in interleaved transcranial magnetic stimulation (TMS)/functional MRI (fMRI) studies.Materials and Methods Initially, a desired TMS coil position at the subject's head is recorded using a neuronavigation system. Subsequently, a custom-made holding device is used for coil placement inside the MR scanner. The parameters of the device corresponding to the prerecorded position are automatically determined from a fast structural image acquired directly before the experiment. The spatial accuracy of our method was verified on a phantom. Finally, in a study on five subjects, the coil was placed above the cortical representation of a hand muscle in M1 and the blood oxygenation level-dependent (BOLD) responses to short repetitive TMS (rTMS) trains were assessed using echo-planar imaging (EPI) recordings.Results The spatial accuracy of our method is in the range of 2.9 ± 1.3 (SD) mm. Motor cortex stimulation resulted in robust BOLD activations in motor- and auditoryrelated brain areas, with the activation in M1 being localized in the hand knob.Conclusion We present a user-friendly method for TMS coil positioning in the MR scanner that exhibits good spatial accuracy and speeds up the setup of the experiment. The motor-cortex study proves the viability of the approach and validates our interleaved TMS/fMRI setup.
机译:目的开发和测试一种在交叉经颅磁刺激(TMS)/功能性MRI(fMRI)研究中放置线圈的新方法。材料和方法首先,使用神经导航系统记录受试者头部所需的TMS线圈位置。随后,使用定制的保持装置将线圈放置在MR扫描仪内部。根据直接在实验之前获取的快速结构图像自动确定与预记录位置相对应的设备参数。我们的方法的空间精度在幻像上得到了验证。最后,在一项针对五名受试者的研究中,将线圈放置在M1中手部肌肉的皮层代表上方,并使用回波平面成像评估了对短重复TMS(rTMS)训练的血氧水平依赖性(BOLD)反应(结果。我们的方法的空间精度在2.9±1.3(SD)毫米范围内。运动皮层刺激在运动和听觉相关的大脑区域导致强大的BOLD激活,M1的激活位于旋钮中。结论我们提供了一种用户友好的方法,用于在MR扫描仪中定位TMS线圈,具有良好的空间准确性和加快实验的建立。运动皮层研究证明了该方法的可行性,并验证了我们的交错式TMS / fMRI设置。

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