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Transcranial magnetic stimulation and brain atrophy: a computer-based human brain model study

机译:经颅磁刺激和脑萎缩:基于计算机的人脑模型研究

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This paper is aimed at exploring the effect of cortical brain atrophy on the currents induced by transcranial magnetic stimulation (TMS). We compared the currents induced by various TMS conditions on several different MRI derived finite element head models of brain atrophy, incorporating both decreasing cortical volume and widened sulci. The current densities induced in the cortex were dependent upon the degree and type of cortical atrophy and were altered in magnitude, location, and orientation when compared to healthy head models. Predictive models of the degree of current density attenuation as a function of the scalp-to-cortex distance were analyzed, concluding that those which ignore the electromagnetic field–tissue interactions lead to inaccurate conclusions. Ultimately, the precise site and population of neural elements stimulated by TMS in an atrophic brain cannot be predicted based on healthy head models which ignore the effects of the altered cortex on the stimulating currents. Clinical applications of TMS should be carefully considered in light of these findings.
机译:本文旨在探讨大脑皮质萎缩对经颅磁刺激(TMS)诱导的电流的影响。我们在几种不同的MRI衍生的脑萎缩有限元头部模型上比较了各种TMS条件引起的电流,这些模型都同时包含了皮质体积的减少和龈沟的扩大。与健康的头部模型相比,皮质中诱导的电流密度取决于皮质萎缩的程度和类型,并且在大小,位置和方向上都发生了改变。分析了电流密度衰减程度与头皮到皮层距离的函数关系的预测模型,得出的结论是,那些忽略电磁场与组织相互作用的模型会得出不正确的结论。最终,无法基于健康的头部模型预测TMS在萎缩性大脑中刺激的神经元的确切位置和数量,而忽略了皮质改变对刺激电流的影响。根据这些发现,应仔细考虑TMS的临床应用。

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