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Reverse engineering and identification in systems biology: strategies perspectives and challenges

机译:系统生物学中的逆向工程和识别:策略观点和挑战

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摘要

The interplay of mathematical modelling with experiments is one of the central elements in systems biology. The aim of reverse engineering is to infer, analyse and understand, through this interplay, the functional and regulatory mechanisms of biological systems. Reverse engineering is not exclusive of systems biology and has been studied in different areas, such as inverse problem theory, machine learning, nonlinear physics, (bio)chemical kinetics, control theory and optimization, among others. However, it seems that many of these areas have been relatively closed to outsiders. In this contribution, we aim to compare and highlight the different perspectives and contributions from these fields, with emphasis on two key questions: (i) why are reverse engineering problems so hard to solve, and (ii) what methods are available for the particular problems arising from systems biology?
机译:数学建模与实验的相互作用是系统生物学的核心要素之一。逆向工程的目的是通过这种相互作用来推断,分析和理解生物系统的功能和调节机制。逆向工程并不排斥系统生物学,并且已经在不同领域进行了研究,例如逆问题理论,机器学习,非线性物理学,(生物)化学动力学,控制理论和优化等。但是,似乎这些地区中的许多地区相对于外界都相对封闭。在此贡献中,我们旨在比较和突出这些领域的不同观点和贡献,重点是两个关键问题:(i)为什么逆向工程问题如此难以解决,以及(ii)特定方法有哪些可用方法系统生物学引起的问题?

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