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Multiple coils in a conducting liquid for deep and whole-brain transcranial magnetic stimulation. II. Multiple-frequency excitation

机译:用于深层和全脑经颅磁刺激的导电液中的多个线圈。 II。多频激励

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We present a system comprising multiple coils immersed in a conducting liquid allowing for unprecedented deep, whole-brain transcranial magnetic stimulation (TMS). The system exploits a configuration of large-coils with dedicated spatial asymmetries in order to spare current induction in the retinas and in the human trunk, optimizing deep-brain stimulation down to the center of the brain. The resulting axially-induced currents of this system are prone to magnetic steering by means of dipole and quadrupole-focusing electromagnet (DC) assemblies, with its viability also analyzed in this work. Finite-element methods were applied onto a spherical head model complemented by an ellipsoidal torso. The head model comprises skin, skull, cerebral spinal fluid, and brain tissue. Results, not yet comprising the magnetic-steering capability of the system, show deep-brain induced currents reaching 53% at 10-cm penetration (brain center) in respect to surface (cortex) maximum. For comparison, state-of-the-art published data reach 47% relative induction at 8-cm depth only. This system counterparts well-known limiting effects occurring due to the enhancement of current densities at the brain/surface interface by immersing the stimulating coils (and partially the head of the patient) into a conducting liquid such as an electrolyte solution or a liquid metal. These results may potentially enhance clinical applicability of TMS in a number of pathologies such as Alzheimer's disease, parkinsonism, depression, sleep disorders, pain management, stroke rehabilitation, tinnitus, trigeminal neuralgia, brain palsy, and prevention and resolution of epileptic seizures, among others.
机译:我们提出了一种包含多个线圈的系统,其浸入导电液中,允许前所未有的深,全脑经颅磁刺激(TMS)。该系统利用了具有专用空间不对称的大线圈的配置,以便在视网膜和人体中的电流感应,并在人体躯干中优化深脑刺激到大脑的中心。通过偶极和四极其聚焦的电磁铁(DC)组件,该系统的由此产生的轴向诱导的电流易于通过偶极和四极孔聚焦电磁铁(DC)组件。在这项工作中也分析了其活力。将有限元方法施加到由椭圆形躯干互补的球形头模型上。头部模型包括皮肤,颅骨,脑脊髓液和脑组织。结果尚未包含该系统的磁力转向能力,显示深脑诱导的电流在10厘米的渗透(脑中中心)最大值下达到53%的电流。为了比较,最先进的已发布数据仅达到47%的相对诱导,仅在8厘米的深度上。该系统通过将刺激线圈(和部分头部的头部)浸入诸如电解质溶液或液态金属的导电液体中,对应于脑/表面界面处的电流密度的增强而发生众所周知的限制效果。这些结果可能潜在地提高TMS在诸如阿尔茨海默病,帕金森,抑郁症,睡眠障碍,疼痛管理,中风康复,耳鸣,三叉神经痛,脑瘫和癫痫发作等中的临床适用性的临床适用性。

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