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Encoding and selecting coarse-grain mapping operators with hierarchical graphs

机译:使用分层图形编码和选择粗粒映射运算符

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Coarse-grained (CG) molecular dynamics (MD) can simulate systems inaccessible to fine-grained (FG) MD simulations. A CG simulation decreases the degrees of freedom by mapping atoms from an FG representation into agglomerate CG particles. The FG to CG mapping is not unique. Research into systematic selection of these mappings is challenging due to their combinatorial growth with respect to the number of atoms in a molecule. Here we present a method of reducing the total count of mappings by imposing molecular topology and symmetry constraints. The count reduction is illustrated by considering all mappings for nearly 50 000 molecules. The resulting number of mapping operators is still large, so we introduce a novel hierarchical graphical approach which encodes multiple CG mapping operators. The encoding method is demonstrated for methanol and a 14-mer peptide. With the test cases, we show how the encoding can be used for automated selection of reasonable CG mapping operators. Published by AIP Publishing.
机译:粗粒(CG)分子动力学(MD)可以模拟细粒(FG)MD模拟无法访问的系统。 CG模拟通过将原子从FG表示中的映射到附聚CG颗粒中的映射来降低自由度。 FG到CG映射不是唯一的。对这些映射的系统选择的研究是由于它们相对于分子中的原子数量的组合增长而挑战。在这里,我们提出了一种通过施加分子拓扑和对称约束来减少映射总数的方法。通过考虑近50 000分子的所有映射来说明计数。由此产生的映射运算符仍然很大,因此我们介绍了一种新的分层图形方法,其编码多个CG映射运算符。编码方法用于甲醇和14-MEL肽。通过测试用例,我们展示了编码如何用于自动选择合理的CG映射运算符。通过AIP发布发布。

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