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ENISI multiscale modeling of mucosal immune responses driven by high performance computing

机译:高性能计算驱动的粘膜免疫反应的ENISI多尺度建模

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Computational modeling tools have increasingly important roles in our understanding of biological processes. Computer simulations guide experimental and clinical efforts in an unprecedented rate. This study presents ENteric Immunity Simulator - multiscale modeling (MSM) platform developed for high performance computing (HPC). ENISI MSMv2 is designed for modeling mucosal immune responses. The system scales to 109 agents in HPC simulations. This is an important step towards building large scale information processing representations of immune responses that integrate multiple modeling technologies and spatiotemporal scales ranging from nanoseconds to years and from molecules to systems. Our HPC-driven ENISI MSM platform combines the study of molecular pathways controlling T cell differentiation and tissue level interactions between cells to characterize novel mechanisms of immunoregulation at the gut mucosa.
机译:在我们对生物过程的理解中,计算建模工具具有越来越重要的作用。计算机仿真指南以前所未有的速度指导实验和临床努力。本研究提出了为高性能计算(HPC)开发的肠道免疫模拟器 - 多尺度建模(MSM)平台。 ENISI MSMV2专为造型粘膜免疫反应而设计。系统在HPC仿真中缩放到109代理。这是建立免疫反应的大规模信息处理表示的重要步骤,其整合多种建模技术和从纳秒到几年和从分子到系统的分子。我们的HPC驱动的ENISI MSM平台结合了控制T细胞分化和细胞之间的组织水平相互作用的分子途径的研究,以表征肠粘膜在肠粘膜中的免疫调节机制。

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