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Predicting the Effects of Parameters Changes in Stochastic Models through Parallel Synthetic Experiments and Multivariate Analysis

机译:通过并行综合实验和多元分析预测随机模型中参数变化的影响

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Usually researchers require many experiments to verify how biological systems respond to stimuli. However, the high cost of reagents and facilities as well as the time required to carry out experiments are sometimes the main cause of failure. In this regards, Information Technology offers a valuable help: modeling and simulation are mathematical tools to execute virtual experiments on computing devices. Through synthetic experimentation, researchers can sample the parameters space of a biological system and obtain hundreds of potential results, ready to be reused to design and conduct more targeted wet-lab experiments. A non negligible achievement of this is the enormous saving of resources and time. In this paper, we present a plug-in-based software prototype that combines high performance computing and statistics. Our framework relies on parallel computing to run large numbers of synthetic experiments. Multivariate analysis is then used to interpret and validate results. The software is tested on two well-known oscillatory models: Predator-Prey (Lotka-Volterra) and Repressilator.
机译:通常研究人员需要许多实验来验证生物系统如何应对刺激。然而,试剂和设施的高成本以及进行实验所需的时间有时是失败的主要原因。在这方面,信息技术提供了有价值的帮助:建模和仿真是在计算设备上执行虚拟实验的数学工具。通过合成实验,研究人员可以确定生物系统的参数空间,并获得数百种潜在的结果,准备被重用设计和进行更多目标湿实验室实验。不可忽略的实现是资源和时间的巨大节省。在本文中,我们介绍了一个基于插件的软件原型,它结合了高性能计算和统计数据。我们的框架依赖于平行计算来运行大量的合成实验。然后使用多变量分析来解释和验证结果。该软件在两个众所周知的振荡模型上进行测试:捕食者 - 猎物(Lotka-Volterra)和抑制因子。

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