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An Observation-Driven Agent-Based Modeling and Analysis Framework for C. elegans Embryogenesis

机译:基于观察驱动剂的秀丽隐杆线虫胚胎发生建模与分析框架

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摘要

With cutting-edge live microscopy and image analysis, biologists can now systematically track individual cells in complex tissues and quantify cellular behavior over extended time windows. Computational approaches that utilize the systematic and quantitative data are needed to understand how cells interact in vivo to give rise to the different cell types and 3D morphology of tissues. An agent-based, minimum descriptive modeling and analysis framework is presented in this paper to study C. elegans embryogenesis. The framework is designed to incorporate the large amounts of experimental observations on cellular behavior and reserve data structures/interfaces that allow regulatory mechanisms to be added as more insights are gained. Observed cellular behaviors are organized into lineage identity, timing and direction of cell division, and path of cell movement. The framework also includes global parameters such as the eggshell and a clock. Division and movement behaviors are driven by statistical models of the observations. Data structures/interfaces are reserved for gene list, cell-cell interaction, cell fate and landscape, and other global parameters until the descriptive model is replaced by a regulatory mechanism. This approach provides a framework to handle the ongoing experiments of single-cell analysis of complex tissues where mechanistic insights lag data collection and need to be validated on complex observations.
机译:借助先进的实时显微镜和图像分析,生物学家现在可以系统地追踪复杂组织中的单个细胞,并在延长的时间窗口内量化细胞行为。需要利用系统和定量数据的计算方法来了解细胞如何在体内相互作用以产生不同的细胞类型和组织的3D形态。本文提出了一种基于主体的最小描述性建模和分析框架来研究秀丽隐杆线虫的胚胎发生。该框架旨在合并有关细胞行为的大量实验观察结果,并保留数据结构/接口,以便在获得更多见解时添加监管机制。观察到的细胞行为被组织成谱系身份,细胞分裂的时间和方向以及细胞运动的路径。该框架还包括全局参数,例如蛋壳和时钟。分裂和运动行为是由观测的统计模型驱动的。数据结构/接口保留用于基因列表,细胞-细胞相互作用,细胞命运和景观以及其他全局参数,直到描述性模型被调节机制取代。这种方法提供了一个框架来处理正在进行的复杂组织单细胞分析实验,其中机械的见解滞后于数据收集,需要在复杂的观察结果上进行验证。

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