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THREE-DIMENSIONAL EEG SOURCE RECONSTRUCTION ON HIGH PERFORMANCE COMPUTERS: METHODOLOGICAL AND COMPUTATIONAL ISSUES

机译:高性能计算机的三维EEG源重建:方法论和计算问题

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This paper presents an original problem solving framework specifically conceived and designed to achieve high performance three-dimensional (3D) reconstruction of the sources of electroencephalographic (EEG) brain activity, named TEBAM (True Electrical Brain Activity Mapping). We describe the integrated framework that has been proposed and developed, specifying TEBAM's design characteristics, implementation and tools interconnections (pipelines). TEBAM relays on patient's specific realistic head modeling for the EEG forward and inverse problem evaluation and is implemented and optimized with a very flexible approach to solve in short time, by means of High Performance Computing resources, the large scale computations needed. Results of 3D True Electrical Brain Activity Mapping can be visualized in TEBAM framework in different multimodal ways, combining the anatomical information with the computed results to give an optimal insight of computation output, relying also on stereographic visualization.
机译:本文介绍了一个原始的问题解决框架,具体构思,旨在实现脑电图(EEG)脑活动源的高性能三维(3D)重建,命名为TEBAM(真正的电脑活动映射)。我们描述了已提出和开发的综合框架,指定TEBAM的设计特征,实施和工具互连(管道)。 TEBAM继电器对患者的特定现实头部建模,用于欧盟前进和逆问题评估,并以非常灵活的方法在短时间内解决和优化,通过高性能计算资源,所需的大规模计算。 3D真正电脑活动映射的结果可以以不同的多模式方式在TEBAM框架中可视化,将解剖信息与计算结果相结合,以提供对计算输出的最佳识别,也依赖于立体可视化。

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