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Mathematical modeling of tumor growth in mice following low-level direct electric current

机译:低水平直流电对小鼠肿瘤生长的数学建模

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摘要

A modification to the conventional Gompertz equation (named modified Gompertz equation) is introduced to describe the solid tumor growth perturbed with direct electric current. Simulations of this equation are made. Quantitative fitting criteria as goodness-of-fit, handling missing data and prediction capability are considered. Also, parameter estimation accuracy is calculated. A fit of the experimental data of Ehrlich and fibrosarcoma Sa-37 tumor growths treated with different intensities of direct electric current are also made to validate this modified Gompertz equation. The results obtained in this study corroborate that the direct electric current effectiveness depends on (i/j_0) ratio, and also on the duration of the effects of it into the tumor, and of the tumor type. It was concluded that the modified Gompertz equation has a good prediction capability to describe both unperturbed and perturbed tumor growths and it could be used to help physicians choose the most appropriate treatment for patients and animals with malignant solid tumors.
机译:引入了对传统Gompertz方程的修改(称为改进的Gompertz方程),以描述受到直流电干扰的实体瘤生长。对该方程进行了仿真。考虑了定量拟合标准,如拟合优度,处理缺失数据和预测能力。另外,计算参数估计精度。还拟合了用不同强度的直流电治疗的Ehrlich和纤维肉瘤Sa-37肿瘤生长的实验数据,以验证该修正的Gompertz方程。在这项研究中获得的结果证实,直流电的有效性取决于(i / j_0)比率,还取决于它对肿瘤的影响持续时间以及肿瘤类型。结论是,修改后的Gompertz方程具有良好的预测能力,可以描述无扰动和无扰动的肿瘤生长,并且可以用来帮助医生为患有恶性实体瘤的患者和动物选择最合适的治疗方法。

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