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On the efficient numerical simulation of heterogeneous anisotropic diffusion models for tumor invasion using GPUs

机译:用GPU肿瘤侵袭的非均相各向异性扩散模型的高效数值模拟

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The aim of this article is to show how continuous mathematical models for tumor dynamics can be solved efficiently using commodity Graphics Processing Units (GPUs) found in personal and portable computers. The test set of equations models haptotaxis and heterogeneous anisotropic diffusion of the cancer cells population. The numerical solution is obtained by using a second order finite difference Euler scheme. It is proven that, as the space resolution improves, the GPU implementation of the numerical scheme shows an increasingly better performance than that of the Central Processing Units (CPUs).
机译:本文的目的是展示如何利用个人和便携式计算机中的商品图形处理单元(GPU)有效地解决肿瘤动态的连续数学模型。 方程的测试组模型抗癌细胞和异质各向异性扩散的癌细胞群体。 通过使用二阶有限差异欧拉方案获得数值解决方案。 证明,随着空间分辨率的提高,数值方案的GPU实现显示出比中央处理单元(CPU)的性能越来越好。

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