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A Domain Decomposition Method to Simulate the Response of Biological Cell Systems Exposed to Radio Frequency

机译:一种模拟射频暴露于射频的生物电池系统响应的域分解方法

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A combination of a domain decomposition algorithm and a finite element method for the efficient three dimensional simulation of electro-quasistatic multi-scale problems is presented and applied to the simulation of the dielectric properties of biological cell suspensions. In this scheme, cells and membranes are discretized by meshes fitted to their geometrical scales. The simulation can be carried out for all considered cells in parallel. The data exchange between the particular meshes relies on Robin boundary conditions assuring the conservation of fluxes according to Maxwell's equations. Efficient algorithms are provided for data exchange between the meshes. From simulation results, biologically relevant quantities, such as the transmembrane potential, are computed.
机译:呈现域分解算法的组合和用于高效三维模拟电Quasistatic多尺度问题的有限元方法的组合,并应用于生物电池悬浮液的介电性质的模拟。在该方案中,细胞和膜通过装配到其几何尺度的网眼来离散化。可以对所有被认为的单元进行并行进行模拟。特定网格之间的数据交换依赖于Robin边界条件,确保根据Maxwell等式保守助护。提供高效的算法用于网格之间的数据交换。从仿真结果中,计算生物学相关的数量,例如跨膜电位。

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