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Analysing Tumour Growth Delay Data from Animal Irradiation Experiments with Deviations from the Prescribed Dose

机译:分析动物辐照实验中与规定剂量有偏差的肿瘤生长延迟数据

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摘要

The development of new radiotherapy technologies is a long-term process, which requires proof of the general concept. However, clinical requirements with respect to beam quality and controlled dose delivery may not yet be fulfilled. Exemplarily, the necessary radiobiological experiments with laser-accelerated electrons are challenged by fluctuating beam intensities. Based on tumour-growth data and dose values obtained in an in vivo trial comparing the biological efficacy of laser-driven and conventional clinical Linac electrons, different statistical approaches for analysis were compared. In addition to the classical averaging per dose point, which excludes animals with high dose deviations, multivariable linear regression, Cox regression and a Monte-Carlo-based approach were tested as alternatives that include all animals in statistical analysis. The four methods were compared based on experimental and simulated data. All applied statistical approaches revealed a comparable radiobiological efficacy of laser-driven and conventional Linac electrons, confirming the experimental conclusion. In the simulation study, significant differences in dose response were detected by all methods except for the conventional method, which showed the lowest power. Thereby, the alternative statistical approaches may allow for reducing the total number of required animals in future pre-clinical trials.
机译:新放射疗法技术的开发是一个长期的过程,需要对总体概念进行证明。然而,关于射束质量和受控剂量递送的临床要求可能尚未满足。示例性地,束流强度的变化挑战了激光加速电子所必需的放射生物学实验。根据在体内试验中获得的肿瘤生长数据和剂量值,比较激光驱动和常规临床直线加速器电子的生物功效,比较了不同的统计分析方法。除了经典的平均剂量点(排除具有高剂量偏差的动物)外,还对多变量线性回归,Cox回归和基于蒙特卡洛的方法进行了测试,将所有动物纳入统计分析。根据实验和模拟数据比较了这四种方法。所有应用的统计方法均显示出激光驱动的和传统的直线加速器电子具有相当的放射生物学功效,从而证实了实验结论。在模拟研究中,除常规方法显示的最低功率外,所有方法均检测到剂量响应的显着差异。因此,替代的统计方法可以允许减少将来的临床前试验中所需动物的总数。

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