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Source localization using a current-density minimization approach

机译:使用电流密度最小化方法进行源定位

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Determining the location of cortical activity from electroencephalographic (EEG) data is important clinically. In this paper, a method is presented which uses the powerful optimization method of simulated annealing in conjunction with a finite-element-based model of the search domain for a single-time slice solution of the EEG-inverse problem. The algorithm highlights a new objective function based on the current-density boundary integral associated with the finite-element formulation as the basis for parameter optimization. In two-dimensional experiments in a shallow tank containing saline, single dipoles are located within 2 mm. Simulations studying the algorithms response to structured noise are also presented. The new objective function is shown to take advantage of the natural framework associated with finite-elements and the results suggest that the approach is capable of resolving dipole locations in simulations and experiments.
机译:从脑电图(EEG)数据确定皮层活动的位置在临床上很重要。本文提出了一种方法,该方法将强大的模拟退火优化方法与基于有限元的搜索域模型一起用于EEG反问题的单次切片解。该算法突出了一个新的目标函数,该函数基于与有限元公式关联的电流密度边界积分作为参数优化的基础。在装有盐水的浅罐中进行的二维实验中,单个偶极子位于2 mm以内。还介绍了研究算法对结构噪声响应的仿真。新的目标函数显示出利用了与有限元关联的自然框架的优势,结果表明该方法能够解决模拟和实验中的偶极子位置。

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