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首页> 外文期刊>Russian Journal of Numerical Analysis and Mathematical Modelling >Modelling of bioimpedance measurements: unstructured mesh application to real human anatomy
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Modelling of bioimpedance measurements: unstructured mesh application to real human anatomy

机译:生物阻抗测量的建模:非结构化网格在真实人体解剖学中的应用

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摘要

A technology for high-resolution efficient numerical modelling of bioimpedance measurements is considered that includes 3D image segmentation, adaptive unstructured tetrahedral mesh generation, finite-element discretization, and analysis of simulation data. The first-order convergence of the proposed numerical methods on a series of unmatched meshes and roughly second-order convergence on a series of nested meshes are shown. The current, potential, and sensitivity field distributions are computed for conventional schemes of bioimpedance measurements using segmented geometrical torso model of the Visible Human Project (VHP) man. Use of the adaptive tetrahedral meshes reduces significantly the number of mesh elements and, hence, the associated computational cost compared to rectangular meshes while keeping the model accuracy.
机译:生物阻抗测量的高分辨率高效数值建模技术被认为包括3D图像分割,自适应非结构​​化四面体网格生成,有限元离散化和仿真数据分析。给出了在一系列不匹配网格上提出的数值方法的一阶收敛性和在一系列嵌套网格上的大致二阶收敛性。使用可见人类计划(VHP)人的分段几何躯干模型,针对常规的生物阻抗测量方案,计算了电流,电势和灵敏度场分布。自适应四面体网格的使用显着减少了网格元素的数量,因此与矩形网格相比,减少了相关的计算成本,同时保持了模型的准确性。

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    Institute of Numerical Mathematics, Russian Academy of Sciences, Moscow 119333, Russia;

    Scientific Research Center 'Medass', Moscow 101000, Russia;

    Institute of Numerical Mathematics, Russian Academy of Sciences, Moscow 119333, Russia;

    Scientific-Educational Center of the Institute of Numerical Mathematics, Russian Academy of Sciences, Moscow 119333, Russia;

    Institute of Numerical Mathematics, Russian Academy of Sciences, Moscow 119333, Russia;

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