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Investigation of shape, position, and permeability of shielding material in quadruple butterfly coil for focused transcranial magnetic stimulation

机译:四重蝶形线圈屏蔽材料的形状,位置和渗透性研究,用于聚焦经颅磁刺激

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Transcranial magnetic stimulation has been gaining popularity in the therapy for several neurological disorders. A time-varying magnetic field is used to generate electric field in the brain. As the development of TMS methods takes place, emphasis on the coil design increases in order to improve focal stimulation. Ideally reduction of stimulation of neighboring regions of the target area is desired. This study, focused on the improvement of the focality of the Quadruple Butterfly Coil (QBC) with supplemental use of different passive shields. Parameters such as shape, position and permeability of the shields have been explored to improve the focus of stimulation. Results have been obtained with the help of computer modelling of a MRI derived heterogeneous head model over the vertex position and the dorsolateral prefrontal cortex position using a finite element tool. Variables such as maximum electric field induced on the grey matter and scalp, volume and area of stimulation above half of the maximum value of electric field on the grey matter, and ratio of the maximum electric field in the brain versus the scalp have been investigated.
机译:经颅磁刺激在几种神经疾病治疗中受到普及。时变磁场用于在大脑中产生电场。随着TMS方法的发展发生,强调线圈设计增加,以改善焦点刺激。理想地期望刺激目标区域的相邻区域的刺激。本研究专注于改善四重蝶形线圈(QBC)的焦点,用不同的无源屏蔽的补充使用。已经探索了屏蔽的形状,位置和渗透性等参数,以改善刺激的焦点。通过使用有限元工具的顶点位置和背侧前额定皮层位置的MRI衍生的异构头模型的计算机建模,通过计算机建模获得了结果。诸如在灰质物质和头皮的最大电场,刺激的最大电场的变量,高于电场上最大值的一半的一半,并且已经研究了大脑与头皮的最大电场的比率。

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