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Effect of white matter anisotropy in modeling electroconvulsive therapy

机译:白质各向异性对电静电疗法建模的影响

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White matter in the brain exhibits strong anisotropic conductivity. Modeling studies on electroen-cephalography have found that such anisotropic conductivity greatly influences the estimated dipole source. In this study, we made a detailed comparison of the effects of conductivity anisotropy using a computational model of electroconvulsive therapy (ECT). The human head model was a high resolution finite element model generated from MRI scans, implemented with tissue heterogeneity and an excitable neural model incorporated in the brain. Results showed that anisotropy in conductivity had minimal effects on the location of the brain region that was maximally activated, but it had relatively large effects on deep brain structures.
机译:大脑中的白质表现出强烈的各向异性电导率。电脑能图的建模研究发现,这种各向异性电导率大大影响了估计的偶极源。在这项研究中,我们使用电压治疗的计算模型进行了电导率各向异性的影响(ECT)的详细比较。人体头部模型是从MRI扫描产生的高分辨率有限元模型,用组织异质性和含有脑中的兴奋神经模型。结果表明,电导率的各向异性对最大激活的大脑区域的位置具有最小的影响,但它对深脑结构具有相对较大的影响。

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