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Web-based applications for building, managing and analysing kinetic models of biological systems

机译:基于Web的应用程序,用于建立,管理和分析生物系统的动力学模型

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摘要

Mathematical modelling and computational analysis play an essential role in improving our capability to elucidate the functions and characteristics of complex biological systems such as metabolic, regulatory and cell signalling pathways. The modelling and concomitant simulation render it possible to predict the cellular behaviour of systems under various genetically and/or environmentally perturbed conditions. This motivates systems biologists/bioengineers/bioinformaticians to develop new tools and applications, allowing non-experts to easily conduct such modelling and analysis. However, among a multitude of systems biology tools developed to date, only a handful of projects have adopted a web-based approach to kinetic modelling. In this report, we evaluate the capabilities and characteristics of current web-based tools in systems biology and identify desirable features, limitations and bottlenecks for further improvements in terms of usability and functionality. A short discussion on software architecture issues involved in web-based applications and the approaches taken by existing tools is included for those interested in developing their own simulation applications.
机译:数学建模和计算分析在提高我们阐明复杂生物系统的功能和特性(例如代谢,调节和细胞信号通路)的能力方面起着至关重要的作用。建模和伴随的仿真使得可以预测在各种遗传和/或环境扰动条件下系统的细胞行为。这激励了系统生物学家/生物工程师/生物信息学家开发新的工具和应用程序,从而使非专家可以轻松地进行此类建模和分析。但是,在迄今为止开发的多种系统生物学工具中,只有少数项目采用了基于Web的动力学建模方法。在此报告中,我们评估了系统生物学中当前基于Web的工具的功能和特性,并确定了可取性,局限性和瓶颈,以进一步改善可用性和功能性。对于有兴趣开发自己的模拟应用程序的人员,将简短讨论基于Web的应用程序中涉及的软件体系结构问题以及现有工具采用的方法。

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