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Anisotropic conductivity tensor imaging for transcranial direct current stimulation (tDCS) using magnetic resonance diffusion tensor imaging (MR-DTI)

机译:使用磁共振扩散张量成像(MR-DTI)的经颅直流刺激(TDC)的各向异性电导率张量成像

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摘要

Transcranial direct current stimulation (tDCS) is a widely used non-invasive brain stimulation technique by applying low-frequency weak direct current via electrodes attached on the head. The tDCS using a fixed current between 1 and 2 mA has relied on computational modelings to achieve optimal stimulation effects. Recently, by measuring the tDCS current induced magnetic field using an MRI scanner, the internal current pathway has been successfully recovered. However, up to now, there is no technique to visualize electrical properties including the electrical anisotropic conductivity, effective extracellular ion-concentration, and electric field using only the tDCS current in-vivo. By measuring the apparent diffusion coefficient (ADC) and the magnetic flux density induced by the tDCS, we propose a method to visualize the electrical properties. We reconstruct the scale parameter, which connects the anisotropic conductivity tensor to the diffusion tensor of water molecules, by introducing a repetitive scheme called the diffusion tensor J-substitution algorithm using the recovered current density and the measured ADCs. We investigate the proposed method to explain why the iterative scheme converges to the internal conductivity. We verified the proposed method with an anesthetized canine brain to visualize electrical properties including the electrical properties by tDCS current.
机译:经颅直流刺激(TDC)是通过施加在头部上的电极施加低频弱直流电流广泛使用的非侵入性脑刺激技术。使用1到2 mA之间的固定电流的TDC依赖于计算建模,以实现最佳的刺激效果。最近,通过使用MRI扫描仪测量TDCS电流诱导的磁场,内部电流路径已成功恢复。然而,到目前为止,没有技术可以仅使用仅在体内的TDC电流的TDCS电流可视化包括电各向异性导电性,有效细胞外离子浓度和电场的电性能。通过测量TDC诱导的表观扩散系数(ADC)和磁通密度,我们提出了一种可视化电性能的方法。我们通过使用回收的电流密度和测量的ADC引入称为扩散张量J-替代算法的重复方案来重建刻度参数,该规模参数将各向异性电导率张量连接到水分子的扩散张量。我们研究了解释为什么迭代方案会聚到内部电导率的原因。我们通过麻醉的犬大脑验证了所提出的方法,以通过TDCS电流可视化包括电性能的电性能。

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