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首页> 外文期刊>Computational and mathematical methods in medicine >Holistic View on Cell Survival and DNA Damage: How Model-Based Data Analysis Supports Exploration of Dynamics in Biological Systems
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Holistic View on Cell Survival and DNA Damage: How Model-Based Data Analysis Supports Exploration of Dynamics in Biological Systems

机译:细胞存活和DNA损伤的整体视图:基于模型的数据分析如何支持探索生物系统中的动态

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In this work, a method is established to calibrate a model that describes the basic dynamics of DNA damage and repair. The model can be used to extend planning for radiotherapy and hyperthermia in order to include the biological effects. In contrast to “syntactic” models (e.g., describing molecular kinetics), the model used here describes radiobiological semantics, resulting in a more powerful model but also in a far more challenging calibration. Model calibration is attempted from clonogenic assay data (doses of 0–6?Gy) and from time-resolved comet assay data obtained within 6?h after irradiation with 6?Gy. It is demonstrated that either of those two sources of information alone is insufficient for successful model calibration, and that both sources of information combined in a holistic approach are necessary to find viable model parameters. Approximate Bayesian computation (ABC) with simulated annealing is used for parameter search, revealing two aspects that are beneficial to resolving the calibration problem: (1) assessing posterior parameter distributions instead of point-estimates and (2) combining calibration runs from different assays by joining posterior distributions instead of running a single calibration run with a combined, computationally very expensive objective function.
机译:在这项工作中,建立一种方法来校准描述DNA损伤和修复基本动态的模型。该模型可用于扩展针对放射治疗和热疗的规划,以包括生物学效应。与“句法”模型相比(例如,描述分子动力学),这里使用的模型描述了放射生物学语义,导致更强大的模型,而且在更具有挑战性的校准中。从克隆灭菌测定数据(0-6℃的剂量为0-6°的剂量)和从6μm的时间分辨的彗星测定数据进行模型校准。据证明,单独的两个信息来源是成功的模型校准不足,并且在整体方法中组合的信息源都是找到可行的模型参数。具有模拟退火的近似贝叶斯计算(ABC)用于参数搜索,揭示有利于解决校准问题的两个方面:(1)评估后部参数分布而不是点估计和(2)组合校准从不同的测定运行连接后部分布而不是使用组合,计算非常昂贵的客观函数运行单个校准运行。

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