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Modeling the electrophysiological activities of breast tumors with different morphologies

机译:用不同形态学建模乳腺肿瘤的电生理活性

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Recently, a diffusion-drift model was developed to simulate the biopotential signals and the electric current densities generated by single and few dividing MCF-7 cells, the most studied breast cancer cell line. In this work, the modeling is extended to simulate tumors containing hundreds of dividing MCF-7 cells. The dividing cells are assembled into realistic tumor patterns generated from a multiple-nutrient tumor growth model. Primarily, three tumor patterns are investigated: papillary, comedo and compact. The numerical results show that the tumor induced biopotentials vary significantly with the tumor pattern. In addition, complex tumor patterns can result in a shift of the point of maximum biopotential away from the center of the tumor. These observations can be utilized in the future advancement of the biopotential detection of breast cancer.
机译:最近,开发了一种扩散漂移模型来模拟单一和少数划分MCF-7细胞产生的生物能态信号和电流密度,是最多研究的乳腺癌细胞系。在这项工作中,建模扩展以模拟含有数百个分割MCF-7细胞的肿瘤。将分割细胞组装成从多营养肿瘤生长模型产生的现实肿瘤模式。主要是研究了三种肿瘤模式:乳头状,甜点和紧凑。数值结果表明,肿瘤诱导的生物异同随着肿瘤模式而显着变化。此外,复杂的肿瘤图案可以导致远离肿瘤中心的最大生物化的点的偏移。这些观察结果可以在未来的乳腺癌的生物能问检测的进步中使用。

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