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首页> 外文期刊>Journal of Integrative Bioinformatics >Converting Biomolecular Modelling Data Based on an XML Representation
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Converting Biomolecular Modelling Data Based on an XML Representation

机译:基于XML表示的生物分子建模数据转换

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Biomolecular modelling has provided computational simulation based methods for investigating biological processes from quantum chemical to cellular levels. Modelling such microscopic processes requires atomic description of a biological system and conducts in fine timesteps. Consequently the simulations are extremely computationally demanding. To tackle this limitation, different biomolecular models have to be integrated in order to achieve high-performance simulations. The integration of diverse biomolecular models needs to convert molecular data between different data representations of different models. This data conversion is often non-trivial, requires extensive human input and is inevitably error prone. In this paper we present an automated data conversion method for biomolecular simulations between molecular dynamics and quantum mechanics/molecular mechanics models. Our approach is developed around an XML data representation called BioSimML (Biomolecular Simulation Markup Language). BioSimML provides a domain specific data representation for biomolecular modelling which can effciently support data interoperability between different biomolecular simulation models and data formats.
机译:生物分子建模提供了基于计算仿真的方法,用于研究从量子化学到细胞水平的生物过程。对此类微观过程进行建模需要对生物系统进行原子描述,并且需要精细的时间步长。因此,仿真对计算的要求很高。为了解决此限制,必须集成不同的生物分子模型才能实现高性能的仿真。各种生物分子模型的集成需要在不同模型的不同数据表示形式之间转换分子数据。这种数据转换通常是不平凡的,需要大量的人工输入,并且不可避免地容易出错。在本文中,我们提出了一种在分子动力学和量子力学/分子力学模型之间进行生物分子模拟的自动数据转换方法。我们的方法是围绕XML数据表示形式开发的,该表示形式称为BioSimML(生物分子模拟标记语言)。 BioSimML为生物分子建模提供了特定领域的数据表示形式,可以有效地支持不同生物分子仿真模型和数据格式之间的数据互操作性。

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