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Correlation of Estimated Sources in Human Brain Obtained by Source Localization Method with Waves Obtained by Telegrapher's Equation

机译:通过源定位方法获得的人脑估计源与通过电报员方程获得的波的相关性

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摘要

Information transmission in a neuronal axon is based on electrical processes, which may be compared with the flow of a potential in a dielectric medium inside a cable. Commonly, this wave transition is described by a telegrapher's equation & used extensively in structural analysis & modeling of a neuron. In this paper, a three pronged approach was adopted to investigate the relation between these propagating waves and Scalp EEG. Firstly, a unique continuous domain solution for the Current Wave propagation was obtained, and simulated in the frequency band 0-30 Hz. Then, Cortical Source natures were obtained from Scalp EEG by standard Low Resolution Brain Electromagnetic Tomography (sLORETA). Subsequently, the correlation between the spatial average of the current dipole sources obtained from sLORETA and the propagating neuronal current waves were explored.
机译:神经元轴突中的信息传输基于电气过程,可以将其与电缆内部电介质中的电势流进行比较。通常,这种波跃迁用电报员的方程式描述,并广泛用于神经元的结构分析和建模。本文采用三管齐下的方法研究这些传播波与头皮脑电图之间的关系。首先,获得了电流波传播的唯一连续域解,并在0-30 Hz频带中进行了仿真。然后,通过标准的低分辨率脑电磁层析成像(sLORETA)从头皮脑电图获得皮层来源性质。随后,探索了从sLORETA获得的电流偶极子源的空间平均值与传播的神经元电流波之间的相关性。

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