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Addressing biological circuit simulation accuracy: Reachability for parameter identification and initial conditions

机译:寻址生物电路仿真精度:参数识别和初始条件的可达性

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ab]Accurate simulation of biological networks is difficult not only due to the computational cost associated with large-scale systems simulation, but also due to the inherent limitations of mathematical models. We address two components to improve biological circuit simulation accuracy: 1) feasible initial conditions, and 2) identification of critical yet unknown model parameters. For those parameters that may not be available from experimental data, we incorporate reachability analysis to enhance our optimization/simulation framework and estimate those parameters that are capable of creating behaviors consis tent with known experimental data. We apply these techniques to a biological circuit model of tryptophan biosynthesis in E. coli, and quantify the improvement in simulation accuracy when reachability analysis is used.
机译:AB]精确模拟生物网络是困难的,不仅是由于与大规模系统仿真相关的计算成本,而且由于数学模型的固有局限性。我们解决了两个组件,以提高生物电路仿真精度:1)可行的初始条件,2)识别临界尚不清楚的模型参数。对于可能无法从实验数据中获得的参数,我们采用可达性分析,以增强我们的优化/仿真框架,并估计能够使用已知的实验数据创建行为Consis帐篷的那些参数。我们将这些技术应用于大肠杆菌中色氨酸生物合成的生物电路模型,并在使用可达性分析时量化模拟精度的提高。

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