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Effects of Pharmacokinetics and DNA Repair on the Structure of Optimal Controls in a Simple Model of Radio-Chemotherapy

机译:简单的放化疗模型中药代动力学和DNA修复对最佳对照结构的影响

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In this study optimal control framework is applied to two models of radiochemotherapy. A base, simple model adopts a classical log-kill hypothesis for chemotherapy and a linear-quadratic response for radiotherapy. The model is represented by the first order nonlinear differential equations with two control variables which can be transformed into a linear differential equations with a nonlinear control action. The multi-input optimal control problem formulated for this model is solved explicitly. It is shown that optimal treatment should apply radiotherapy first, while the onset of chemotherapy should be delayed. The second model takes into account the effects of drug metabolism (pharmacokinetics) and DNA repair of adjacent strand breaks. By obtaining full analytical results for chemotherapy control and partial results for radiotherapy it is shown that an introduction of these additional processes alters the structure of optimal control, which sometimes leads to opposite conclusions. A numerical example is provided which suggests that in practice the differences may not be as critical as the purely theoretical results would suggest.
机译:在这项研究中,最佳控制框架被应用于两种放化疗模型。一个基本的简单模型采用经典的对数杀伤假说进行化学疗法,并采用线性二次方响应进行放疗。该模型由具有两个控制变量的一阶非线性微分方程表示,可以将其转换为具有非线性控制作用的线性微分方程。明确解决了为此模型制定的多输入最优控制问题。结果表明,最佳治疗应首先应用放射疗法,而化学疗法的出现应延迟。第二种模型考虑了药物代谢(药代动力学)和相邻链断裂的DNA修复的影响。通过获得化学疗法控制的全部分析结果和放射疗法的部分结果,表明引入这些其他过程会改变最佳控制的结构,有时会得出相反的结论。提供了一个数值示例,表明在实践中,差异可能不如纯理论结果所提示的那么关键。

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