Multigrid Solution of the Potential Field in Modeling Electrical Nerve Stimulation

Rudi Hoekema , Kees Venner , Johannes J. Struijk , Jan Holsheimer
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引用次数: 29

Abstract

In this paper, multilevel techniques are introduced as a fast numerical method to compute 3-D potential field in nerve stimulation configurations. It is shown that with these techniques the computing time is reduced significantly compared to conventional methods. Consequently, these techniques greatly enhance the possibilities for parameter studies and electrode design. Following a general description of the model of nerve stimulation configurations, the basic principles of multilevel solvers for the numerical solution of partial differential equations are briefly summarized. Subsequently, some essential elements for successful application are discussed. Finally, results are presented for the potential field in a nerve bundle induced by tripolar stimulation with a cuff electrode surrounding part of the nerve.

神经电刺激模型中电位场的多网格解
本文介绍了多层技术作为一种快速计算神经刺激构型三维电位场的数值方法。结果表明,与传统方法相比,这些技术的计算时间大大缩短。因此,这些技术大大提高了参数研究和电极设计的可能性。在对神经刺激配置模型进行一般性描述之后,简要总结了偏微分方程数值解的多级求解的基本原理。随后,讨论了成功应用的一些基本要素。最后,我们给出了在三极刺激下神经束电位场的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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