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Electromagnetic and mechanical characterization of a flexible coil for transcranial magnetic stimulation

机译:用于经颅磁刺激的柔性线圈的电磁和力学表征

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摘要

Transcranial magnetic stimulation is a painless and noninvasive method for treating brain disorders. The coil-geometries that match the head topologies achieve more effective stimulation, however it is difficult for a rigid coil to fit the skulls of all patients. We propose and develop a rubber-like flexible coil that can be shaped into different geometries to reduce the inter-individual variabilities in its clinical use. The main challenge is attributed to the fact that the external bending and induced Lorentzian forces cause coil deformation and fatigue. Herein, we investigated the influence of bending on the electromagnetic characteristics of the flexible coil. The magnetic field distribution was calculated and measured using a search coil. The induced Lorentzian force was calculated and the induced eddy current density was simulated using the scalar potential finite difference (SPFD) method. For a mechanical characterization, we fixed the center of the coil, and external bending forces were applied on the two wings of the coils, while Lorentzian forces were applied in a direction normal to the side wall of the wire groove. Fatigue analyses of these forces were also conducted. The results show that the eddy current density induced in the brain by the flexible coil was significantly higher compared to that of the figure-eight and butterfly coils. Fatigue analyses show that the bending force required to achieve a close coil fit on the human head and the generated Lorentzian force would not lead to fatigue problem.
机译:经颅磁刺激是一种治疗脑疾病的无痛和非侵入性方法。与头部拓扑匹配的线圈几何形状实现更有效的刺激,但是刚性线圈难以适合所有患者的头骨。我们提出并开发了一种橡胶状柔性线圈,可以成形为不同的几何形状,以降低其临床使用中的各种变形性。主要挑战归因于外,外部弯曲和诱导的洛伦兹力导致线圈变形和疲劳。这里,我们研究了弯曲对柔性线圈电磁特性的影响。使用搜索线圈计算和测量磁场分布。计算诱导的Lorentzian力,并使用标量电位有限差(SPFD)方法模拟诱导的涡流密度。为了机械表征,我们固定了线圈的中心,并且在线圈的两个翼上施加外部弯曲力,而洛伦兹力在垂直于线槽的侧壁的方向上施加。还进行了这些力的疲劳分析。结果表明,与图8和蝶形线圈相比,柔性线圈在大脑中诱导的涡流密度显着高。疲劳分析表明,在人体头部实现闭合线圈所需的弯曲力和产生的洛伦兹力不会导致疲劳问题。

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