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使用 Tissue Forge 进行生物学应用中的通用、开源顶点建模。

General, open-source vertex modeling in biological applications using Tissue Forge.

机构信息

Department of Medicine, University of Florida, Gainesville, FL, USA.

Department of Biomedical Engineering, University of Virginia, Charlottesville, VA, USA.

出版信息

Sci Rep. 2023 Oct 19;13(1):17886. doi: 10.1038/s41598-023-45127-x.

Abstract

Vertex models are a widespread approach for describing the biophysics and behaviors of multicellular systems, especially of epithelial tissues. Vertex models describe a wide variety of developmental scenarios and behaviors like cell rearrangement and tissue folding. Often, these models are implemented as single-use or closed-source software, which inhibits reproducibility and decreases accessibility for researchers with limited proficiency in software development and numerical methods. We developed a physics-based vertex model methodology in Tissue Forge, an open-source, particle-based modeling and simulation environment. Our methodology describes the properties and processes of vertex model objects on the basis of vertices, which allows integration of vertex modeling with the particle-based formalism of Tissue Forge, enabling an environment for developing mixed-method models of multicellular systems. Our methodology in Tissue Forge inherits all features provided by Tissue Forge, delivering open-source, extensible vertex modeling with interactive simulation, real-time simulation visualization and model sharing in the C, C++ and Python programming languages and a Jupyter Notebook. Demonstrations show a vertex model of cell sorting and a mixed-method model of cell migration combining vertex- and particle-based models. Our methodology provides accessible vertex modeling for a broad range of scientific disciplines, and we welcome community-developed contributions to our open-source software implementation.

摘要

顶点模型是描述多细胞系统(尤其是上皮组织)生物物理学和行为的一种广泛应用的方法。顶点模型描述了各种发育场景和行为,如细胞重排和组织折叠。通常,这些模型是作为单一用途或闭源软件实现的,这会妨碍可重复性,并降低了软件开发和数值方法熟练程度有限的研究人员的可访问性。我们在 Tissue Forge 中开发了一种基于物理的顶点模型方法,这是一个开源的基于粒子的建模和模拟环境。我们的方法基于顶点描述顶点模型对象的属性和过程,这允许将顶点建模与 Tissue Forge 的基于粒子的形式体系结构集成在一起,从而为开发多细胞系统的混合方法模型提供了一个环境。我们在 Tissue Forge 中的方法继承了 Tissue Forge 提供的所有功能,提供了开源、可扩展的顶点建模,具有交互式模拟、实时模拟可视化以及在 C、C++和 Python 编程语言中的模型共享功能,以及 Jupyter Notebook。演示展示了一个细胞排序的顶点模型和一个结合了顶点和基于粒子的模型的细胞迁移的混合方法模型。我们的方法为广泛的科学学科提供了可访问的顶点建模,我们欢迎社区对我们的开源软件实现做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7895/10587242/8338a80b3b88/41598_2023_45127_Fig1_HTML.jpg

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