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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >A Fast Parallel Solver for the Forward Problem in Electrical Impedance Tomography
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A Fast Parallel Solver for the Forward Problem in Electrical Impedance Tomography

机译:电阻抗层析成像正问题的快速并行求解器

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摘要

Electrical impedance tomography (EIT) is a noninvasive imaging modality, where imperceptible currents are applied to the skin and the resulting surface voltages are measured. It has the potential to distinguish between ischaemic and haemorrhagic stroke with a portable and inexpensive device. The image reconstruction relies on an accurate forward model of the experimental setup. Because of the relatively small signal in stroke EIT, the finite-element modeling requires meshes of more than 10 million elements. To study the requirements in the forward modeling in EIT and also to reduce the time for experimental image acquisition, it is necessary to reduce the run time of the forward computation. We show the implementation of a parallel forward solver for EIT using the C++ library and demonstrate its performance on many CPU's of a computer cluster. For a typical EIT application a direct solver was significantly slower and not an alternative to iterative solvers with multigrid preconditioning. With this new solver, we can compute the forward solutions and the Jacobian matrix of a typical EIT application with 30 electrodes on a 15-million element mesh in less than 15 min. This makes it a valuable tool for simulation studies and EIT applications with high precision requirements. It is freely available for download.
机译:电阻抗断层扫描(EIT)是一种非侵入性成像方式,其中将不可察觉的电流施加到皮肤上,并测量所得的表面电压。它具有通过便携式且廉价的设备来区分缺血性和出血性中风的潜力。图像重建依赖于实验装置的精确正向模型。由于笔划EIT中的信号相对较小,因此有限元建模需要的网格超过1000万个元素。为了研究EIT中正向建模的要求并减少实验图像采集的时间,有必要减少正向计算的运行时间。我们展示了使用C ++库实现的EIT并行正向求解器的实现,并展示了其在计算机集群的许多CPU上的性能。对于典型的EIT应用程序,直接求解器的速度明显较慢,并且不能替代使用多网格预处理的迭代求解器。使用这种新的求解器,我们可以在不到15分钟的时间内,在1500万个元素网格上计算30个电极的典型EIT应用的正解和雅可比矩阵。这使其成为具有高精度要求的仿真研究和EIT应用的宝贵工具。可以免费下载。

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