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Towards Anatomic Scale Agent-Based Modeling with a Massively Parallel Spatially Explicit General-Purpose Model of Enteric Tissue (SEGMEnT_HPC)

机译:迈向基于大规模组织的肠道组织通用并行通用模型(SEGMEnT_HPC)的基于解剖学尺度代理的建模

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摘要

Perhaps the greatest challenge currently facing the biomedical research community is the ability to integrate highly detailed cellular and molecular mechanisms to represent clinical disease states as a pathway to engineer effective therapeutics. This is particularly evident in the representation of organ-level pathophysiology in terms of abnormal tissue structure, which, through histology, remains a mainstay in disease diagnosis and staging. As such, being able to generate anatomic scale simulations is a highly desirable goal. While computational limitations have previously constrained the size and scope of multi-scale computational models, advances in the capacity and availability of high-performance computing (HPC) resources have greatly expanded the ability of computational models of biological systems to achieve anatomic, clinically relevant scale. Diseases of the intestinal tract are exemplary examples of pathophysiological processes that manifest at multiple scales of spatial resolution, with structural abnormalities present at the microscopic, macroscopic and organ-levels. In this paper, we describe a novel, massively parallel computational model of the gut, the Spatially Explicitly General-purpose Model of Enteric Tissue_HPC (SEGMEnT_HPC), which extends an existing model of the gut epithelium, SEGMEnT, in order to create cell-for-cell anatomic scale simulations. We present an example implementation of SEGMEnT_HPC that simulates the pathogenesis of ileal pouchitis, and important clinical entity that affects patients following remedial surgery for ulcerative colitis.
机译:生物医学研究界当前面临的最大挑战可能是整合高度详细的细胞和分子机制以代表临床疾病状态的能力,以此作为设计有效疗法的途径。在器官水平病理生理学方面以异常组织结构表示尤其明显,通过组织学,异常组织结构仍然是疾病诊断和分期的主要手段。这样,能够生成解剖学规模的仿真是非常期望的目标。尽管计算限制以前已经限制了多尺度计算模型的大小和范围,但是高性能计算(HPC)资源的容量和可用性的进步极大地扩展了生物系统计算模型达到解剖学和临床相关规模的能力。 。肠道疾病是病理生理过程的示例性例子,表现在空间分辨率的多个尺度上,并且在微观,宏观和器官水平都存在结构异常。在本文中,我们描述了一种新颖的肠道大规模并行计算模型,即肠组织HPC的空间显式通用模型(SEGMEnT_HPC),该模型扩展了肠道上皮的现有模型SEGMEnT,以创建用于细胞解剖比例模拟。我们提供了SEGMEnT_HPC的示例实现,该实现可模拟回肠性囊炎的发病机理,以及影响溃疡性结肠炎的手术后影响患者的重要临床实体。

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