脑卒中对经颅磁刺激产生的电场和磁场的扰动效应

Hossamaldin. M. A. Almokashfy, Saba. A. M. Abdelrahman, Marwa. O. D. Elkhidir, S. Ahmed
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引用次数: 0

摘要

经颅磁刺激(TMS)是一种无创、无痛的技术,在医学治疗和神经病学诊断中具有重要的应用价值。最近,经颅磁刺激开始用于治疗中风后的症状,如半瘫痪和发音困难。本文的主要目的是研究行程对经颅磁刺激产生的磁场分布和电流密度的影响。他们制作了两个头部模型:健康的和中风的。设计了经颅磁刺激线圈,并将两个头部模型置于经颅磁刺激线圈下方7mm处。采用有限元分析方法计算了经颅磁刺激线圈在头部组织上产生的磁场和感应电流的大小和空间分布。结果表明,冲程的存在改变了磁场和电流密度的大小和空间分布。与放置笔划的灰质相比,笔划处的电流密度值更大。磁场的矢量分布表明,行程通过将磁矢量吸引到行程中心而改变了磁场的分布。
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Perturbing Effect of Stroke on Electric and Magnetic Fields Generated by Transcranial Magnetic Stimulation
Transcranial magnetic stimulation (TMS) is a non-invasive and painless technique, used as a tool in medical therapeutic and diagnostic in neurology. Recently, TMS started to be used in the treatment of stroke post-conditions such as half paralysis and difficulties of pronunciation. The main objective of this paper was to study the effect of stroke on the distribution of magnetic field and current density generated from TMS. Two head models were created: healthy and with stroke. TMS coil was designed and both head models were placed 7 mm below the TMS coil. The finite element analysis was used to calculate the magnitude and spatial distribution of magnetic field and induced currents on head tissues that generated by TMS coil. The results showed that the presence of stroke changed the magnitude and spatial distribution of magnetic field and current density. The value of current density was greater in the stroke in comparison to the gray matter, where stroke is placed. The vector distribution of the magnetic field showed that the stroke changed the distribution by attracting the magnetic vectors to the center of the stroke.
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