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Estimation of the proliferation and maturation functions in a physiologically structured model of thymocyte development

机译:在胸腺细胞发育的生理结构模型中的增殖和成熟功能的估计

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摘要

The thymus provides a stable microenvironment for post-natal thymocyte development that is finely regulated by a complicated network of cytokines, chemokines, cell-cell contacts, etc., the dysregulations of which contribute to many immunologic diseases including malignant lymphomas. A physiologically structured model in the form of first order partial differential equation (PDE) was developed to simulate the whole process. The combined effects of the thymic microenvironment were conceptualized into two (proliferation and differentiation) fields to serve as kernels of the PDE. In this paper, a novel method is developed to estimate the maturity-time structures of the two fields based solely on cell population data that are experimentally viable. Numerical examples demonstrate the effectiveness of the present method in revealing the two-dimensional (maturity and time) landscapes of the thymic microenvironment.
机译:胸腺为出生后的胸腺细胞发育提供了稳定的微环境,并由复杂的细胞因子,趋化因子,细胞-细胞接触等复杂网络进行精细调节,这种失调导致许多免疫系统疾病,包括恶性淋巴瘤。建立了以一阶偏微分方程(PDE)形式的生理结构模型来模拟整个过程。胸腺微环境的综合作用被概念化为两个(增殖和分化)领域,作为PDE的核心。在本文中,开发了一种新颖的方法来仅基于实验上可行的细胞群体数据来估计两个字段的成熟时间结构。数值示例证明了本方法在揭示胸腺微环境的二维(成熟度和时间)景观方面的有效性。

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