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首页> 外文期刊>Journal of Theoretical Biology >Modeling tumor growth in the presence of a therapy with an effect on rate growth and variability by means of a modified Gompertz diffusion process
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Modeling tumor growth in the presence of a therapy with an effect on rate growth and variability by means of a modified Gompertz diffusion process

机译:通过改良的Gompertz扩散过程模拟在存在疗法的情况下对肿瘤生长的影响,从而影响速率生长和变异性

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摘要

In experimental studies on tumor growth, whenever the time evolution of the relative volume of a tumor in an untreated (control) group can be fitted by a Gompertz diffusion process there is a possibility that an antiproliferative therapy, which modifies the growth rate of the process that fits the treated group, may also affect its variability. The present paper proposes several procedures for the estimation of the time function included in the infinitesimal variance of the new process, as well as the time function affecting the growth rate (which is included in the infinitesimal mean). Also, a hypothesis testing is designed to confirm or refute the need for including such a time-dependent function in the infinitesimal variance. In order to validate and compare the proposed procedures a simulation study has been carried out. In addition, a proposal is made for a strategy aimed at finding the optimal combination of procedures for each case. A real data application concerning the effects of cisplatin on a patient-derived xenograft (PDX) tumor model showcases the advantages of this model over others that have been used in the past. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在肿瘤生长的实验研究中,只要可以通过Gompertz扩散过程拟合未治疗(对照组)中肿瘤相对体积的时间演变,那么抗增殖疗法就有可能改变该过程的生长速率适合治疗组的药物也可能影响其变异性。本文提出了几种估计新过程的无穷小方差中包括的时间函数以及影响增长率的时间函数(无穷小均值中包括)的几种程序。此外,假设检验旨在确认或驳斥在无穷小方差中包含此类随时间变化的函数的需求。为了验证和比较所提出的程序,已经进行了仿真研究。此外,还提出了一种旨在针对每种情况找到最佳程序组合的策略。有关顺铂对患者源异种移植(PDX)肿瘤模型的影响的实际数据应用程序展示了该模型相对于过去使用的其他模型的优势。 (C)2016 Elsevier Ltd.保留所有权利。

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