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Mathematical modeling of lymphocytes selection in the germinal center

机译:发芽中心淋巴细胞选择的数学建模

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Lymphocyte selection is a fundamental process of adaptive immunity. In order to produce B-lymphocytes with a target antigenic profile, mutation selection and division occur in the germinal center, a specific part of lymph nodes. We introduce in this article a simplified mathematical model of this phenomenon, taking into account the main mechanisms. This model is written as a non-linear, non-local, inhomogeneous second order partial differential equation, for which we develop a mathematical analysis. We assess, mathematically and numerically, in the case of piecewise-constant coefficients, the performance of the biological function by evaluating the duration of this production process as a function of several parameters such as the mutation rate or the selection profile, in various asymptotic regimes.
机译:淋巴细胞选择是自适应免疫的基本过程。 为了产生具有靶抗原性剖面的B淋巴细胞,突变选择和分裂发生在生发中心,淋巴结的特定部分。 我们在这篇文章中介绍了这种现象的简化数学模型,考虑到主要机制。 该模型被写为非线性,非局部不均匀的二阶偏微分方程,我们开发了数学分析。 在分段恒定系数的情况下,在分段恒定系数的情况下,通过评估该生产过程的持续时间来评估生物学功能的性能,例如诸如突变率或选择简介的若干参数,在各种渐近制度中 。

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