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Dynamical and Mechanistic Reconstructive Approaches of T Lymphocyte Dynamics: Using Visual Modeling Languages to Bridge the Gap between Immunologists Theoreticians and Programmers

机译:T淋巴细胞动力学的动力学和机械重建方法:使用视觉建模语言弥合免疫学家理论学家和程序员之间的差距

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摘要

Dynamic modeling of lymphocyte behavior has primarily been based on populations based differential equations or on cellular agents moving in space and interacting each other. The final steps of this modeling effort are expressed in a code written in a programing language. On account of the complete lack of standardization of the different steps to proceed, we have to deplore poor communication and sharing between experimentalists, theoreticians and programmers. The adoption of diagrammatic visual computer language should however greatly help the immunologists to better communicate, to more easily identify the models similarities and facilitate the reuse and extension of existing software models. Since immunologists often conceptualize the dynamical evolution of immune systems in terms of “state-transitions” of biological objects, we promote the use of unified modeling language (UML) state-transition diagram. To demonstrate the feasibility of this approach, we present a UML refactoring of two published models on thymocyte differentiation. Originally built with different modeling strategies, a mathematical ordinary differential equation-based model and a cellular automata model, the two models are now in the same visual formalism and can be compared.
机译:淋巴细胞行为的动态建模主要基于基于种群的微分方程或基于在空间中移动并相互作用的细胞因子。建模工作的最后步骤以用编程语言编写的代码表示。由于完全缺乏执行不同步骤的标准化,我们必须对实验学家,理论家和程序员之间的沟通不畅和共享感到遗憾。然而,采用图形化视觉计算机语言应该极大地帮助免疫学家更好地进行交流,更容易地识别模型的相似性,并促进现有软件模型的重用和扩展。由于免疫学家经常根据生物对象的“状态转变”来概念化免疫系统的动态进化,因此我们提倡使用统一建模语言(UML)状态转变图。为了证明这种方法的可行性,我们提出了关于胸腺细胞分化的两个公开模型的UML重构。最初使用不同的建模策略,基于数学常微分方程的模型和元胞自动机模型构建,现在这两个模型具有相同的视觉形式,可以进行比较。

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