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Critical Issues in Modelling Lymph Node Physiology

机译:淋巴结生理建模中的关键问题

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In this study, we discuss critical issues in modelling the structure and function of lymph nodes (LNs), with emphasis on how LN physiology is related to its multi-scale structural organization. In addition to macroscopic domains such as B-cell follicles and the T cell zone, there are vascular networks which play a key role in the delivery of information to the inner parts of the LN, i.e., the conduit and blood microvascular networks. We propose object-oriented computational algorithms to model the 3D geometry of the fibroblastic reticular cell (FRC) network and the microvasculature. Assuming that a conduit cylinder is densely packed with collagen fibers, the computational flow study predicted that the diffusion should be a dominating process in mass transport than convective flow. The geometry models are used to analyze the lymph flow properties through the conduit network in unperturbed- and damaged states of the LN. The analysis predicts that elimination of up to 60%–90% of edges is required to stop the lymph flux. This result suggests a high degree of functional robustness of the network.
机译:在这项研究中,我们讨论了建模淋巴结(LNs)的结构和功能的关键问题,重点是LN生理学如何与其多尺度结构组织相关。除了诸如B细胞滤泡和T细胞区等宏观区域外,还有一些血管网络在向LN内部传递信息方面发挥着关键作用,即导管和血液微血管网络。我们提出了面向对象的计算算法来建模成纤维网状细胞(FRC)网络和微脉管系统的3D几何形状。假设导管圆柱体中密布着胶原纤维,计算流动研究预测扩散应该是对流而不是对流的主要过程。几何模型用于分析淋巴结在不受干扰和受损的状态下通过导管网络的淋巴流动特性。分析预测,要消除淋巴通量,最多需要消除60%–90%的边缘。该结果表明网络具有高度的功能鲁棒性。

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