首页> 外文期刊>International journal of e-health and medical communications. >Integral Equation Formulations and Related Numerical Solution Methods in Some Biomedical Applications of Electromagnetic Fields: Transcranial Magnetic Stimulation (TMS), Nerve Fiber Stimulation
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Integral Equation Formulations and Related Numerical Solution Methods in Some Biomedical Applications of Electromagnetic Fields: Transcranial Magnetic Stimulation (TMS), Nerve Fiber Stimulation

机译:电磁场一些生物医学应用中的整体方程式和相关数值解决方法:经颅磁刺激(TMS),神经纤维刺激

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The paper reviews certain integral equation approaches and related numerical methods used in studies of biomedical applications of electromagnetic fields pertaining to transcranial magnetic stimulation (TMS) and nerve fiber stimulation. TMS is analyzed by solving the set of coupled surface integral equations (SIEs), while the numerical solution of governing equations is carried out via Method of Moments (MoM) scheme. A myelinated nerve fiber, stimulated by a current source, is represented by a straight thin wire antenna. The model is based on the corresponding homogeneous Pocklington integro-differential equation solved by means of the Galerkin Bubnov Indirect Boundary Element Method (GB-IBEM). Some illustrative numerical results for the TMS induced fields and intracellular current distribution along the myelinated nerve fiber (active and passive), respectively, are presented in the paper.
机译:本文回顾了用于研究与经颅磁刺激(TMS)和神经纤维刺激的电磁场生物医学研究的一定的整体方程方法和相关数值方法。 通过求解一组耦合表面整体方程(SIES)来分析TMS,而通过矩(MOM)方案的方法进行控制方程的数值解。 由电流源刺激的肌肉神经纤维由直的薄线天线表示。 该模型基于通过Galerkin Bubnov间接边界元方法(GB-IBEM)解决的相应均匀Pocklington积分式等式。 本文介绍了TMS诱导的TMS诱导场和沿腹膜神经纤维(主动和无源)的诱导领域和细胞内电流分布的一些说明性数值结果。

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