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Effect of coil positioning and orientation of the quadruple butterfly coil during transcranial magnetic stimulation

机译:跨扫磁刺激期间二次蝶线圈定位和方向定向的影响

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摘要

Transcranial Magnetic Stimulation (TMS) is a non-invasive neuromodulation technique for treating neurological and psychiatric disorders. It is a proven technique that is safe and considered very effective when compared to conventional brain surgery or drug therapy. Researchers and clinicians are interested in understanding the distribution of the induced electric field (E-Field) during TMS and determining its effectiveness in treating neurological disorders. TMS studies are primarily focused on enhancing the focality and depth of penetration of the induced electric field in order to increase its effectiveness. Coil orientation has been confirmed to have an effect on the magnitude and direction of the induced E-Field. In this paper, we study the effect of the orientation of the novel Quadruple Butterfly Coil (QBC) on the distribution of the induced E-Field. Finite element analyses were conducted with the orientation of the QBC in steps of 15° over the vertex of two head models and about the transverse (XY –) plane and coronal (XZ –) plane of the head model. The maximum electric field intensity (E-Max) and stimulated volume of the brain (V-Half) were computed and compared to determine the optimal coil orientation.
机译:经颅磁刺激(TMS)是一种治疗神经和精神病疾病的非侵入性神经调节技术。与常规脑外手术或药物治疗相比,这是一种证明的技术,安全,并且被认为非常有效。研究人员和临床医生有兴趣了解在TMS期间诱导电场(E场)的分布并确定其在治疗神经障碍方面的有效性。 TMS研究主要集中于提高诱导电场的渗透和深度,以提高其有效性。已经确认了线圈取向对诱导的电子场的幅度和方向具有影响。本文研究了新颖的四重蝶形线圈(QBC)取向对诱导E场分布的影响。在两个头模型的顶点和围绕头模型的横向(XY - )平面和冠状模型的横向(XY - )平面的步骤中,通过QBC的方向进行有限元分析。计算并比较大脑(V-ALB)的最大电场强度(E-MAX)和刺激体积以确定最佳线圈方向。

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