首页> 外文会议>Engineering in Medicine and Biology Society, 1997. Proceedings of the 19th Annual International Conference of the IEEE >Computing the forward EEG solution of the multishell spherical head model for localizing electrical activity in the brain
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Computing the forward EEG solution of the multishell spherical head model for localizing electrical activity in the brain

机译:计算多壳球形头部模型的正向EEG解决方案以定位大脑中的电活动

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Localization of electrical activity in the brain based on multichannel EEG measurement has been a problem of major interest in computational neuroscience. To compute the current dipole source within the brain a head volume conductor model is required which relates the EEG potentials to the underlying source. The most commonly used head model is a multishell conducting sphere whose forward solution requires a costly evaluation of an infinite sum of the Legendre polynomials. This paper presents a new algorithm which is a closed-form approximation to the exact solution. The resulting computation is accelerated by as much as sixteen times, and the approximation error is very small. A complete C-source code is provided to facilitate the application of this algorithm.
机译:基于多通道脑电图测量的大脑中电活动的定位已成为计算神经科学中的一个主要问题。为了计算大脑中的当前偶极子源,需要一个头体积导体模型,该模型将EEG电位与基础源相关联。最常用的头部模型是多壳导电球,其正解需要对勒让德多项式的无穷大进行昂贵的评估。本文提出了一种新算法,它是精确解的闭式近似。所得的计算最多可加速16倍,并且近似误差非常小。提供了完整的C源代码以促进该算法的应用。

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