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A cell-centered, agent-based framework that enables flexible environment granularities

机译:以单元为中心,基于代理的框架,可实现灵活的环境粒度

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Mechanistic explanations of cell-level phenomena typically adopt an observer perspective. Explanations developed from a cell’s perspective may offer new insights. Agent-based models lend themselves to model from an individual perspective, and existing agent-based models generally utilize a regular lattice-based environment. A framework which utilizes a cell’s perspective in an off-lattice environment could improve the overall understanding of biological phenomena. We present an agent-based, discrete event framework, with a demonstrative focus on biomimetic agents. The framework was first developed in 2-dimensions and then extended, with a subset of behaviors, to 3-dimensions. The framework is expected to facilitate studies of more complex biological phenomena through exploitation of a dynamic Delaunay and Voronoi off-lattice environment.?We used the framework to model biological cells and to specifically demonstrate basic biological cell behaviors in two- and three-dimensional space. Potential use cases are highlighted, suggesting the utility of the framework in various scenarios. The framework presented in this manuscript expands on existing cell- and agent-centered methods by offering a new perspective in an off-lattice environment. As the demand for biomimetic models grows, the demand for new methods, such as the presented Delaunay and Voronoi framework, is expected to increase.
机译:对细胞水平现象的机械解释通常采用观察者的观点。从单元的角度提出的解释可能会提供新的见解。基于代理的模型适合从各个角度进行建模,现有的基于代理的模型通常利用基于规则格的环境。在非晶格环境中利用细胞角度的框架可以提高对生物学现象的整体理解。我们提出了一个基于代理的离散事件框架,并重点介绍了仿生代理。该框架首先在2维中开发,然后将其行为子集扩展到3维。该框架有望通过利用动态Delaunay和Voronoi离格环境促进研究更复杂的生物现象。我们使用该框架对生物细胞进行建模,并专门展示了二维和三维空间中的基本生物细胞行为。 。突出了潜在的用例,表明了该框架在各种情况下的实用性。本手稿中的框架通过在非晶格环境中提供了新的视角,扩展了现有以单元和代理为中心的方法。随着仿生模型需求的增长,对新方法的需求,例如目前提出的Delaunay和Voronoi框架,预计将增加。

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