首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Local Attachment Explains Small World-like Properties of Fibroblastic Reticular Cell Networks in Lymph Nodes
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Local Attachment Explains Small World-like Properties of Fibroblastic Reticular Cell Networks in Lymph Nodes

机译:局部附件解释了淋巴结中成纤维束网状细胞网络的小世界样权

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摘要

Fibroblastic reticular cells (FRCs) form a cellular network that serves as the structural backbone of lymph nodes and facilitates lymphocyte migration. In mice, this FRC network has been found to have small-world properties. Using a model based on geographical preferential attachment, we simulated the formation of a variety of cellular networks and show that similar small-world properties robustly emerge under such natural conditions. By estimating the parameters of this model, we generated FRC network representations with realistic topological properties. We found that the topological properties change markedly when the network is expanded from a thin slice to a three-dimensional cube. Typical small-world properties were found to persist as network size was increased. The simulated networks were very similar to two-dimensional and three-dimensional lattice networks. According to the used metrics, these lattice networks also have small-world properties, indicating that lattice likeness is sufficient to become classified as a small-world network. Our results explain why FRC networks have small-world properties and provide a framework for simulating realistic FRC networks.
机译:肌细胞网状细胞(FRCS)形成一种蜂窝网络,其用作淋巴结的结构骨干,并促进淋巴细胞迁移。在小鼠中,已发现该FRC网络具有小世界。使用基于地理优惠附件的模型,我们模拟了各种蜂窝网络的形成,并表明在这种自然条件下具有鲁棒地出现的类似小世界。通过估计该模型的参数,我们生成了具有现实拓扑特性的FRC网络表示。我们发现,当网络从薄切片扩展到三维立方体时,拓扑属性会显着变化。由于网络规模增加,发现典型的小世界属性持续存在。模拟网络非常类似于二维和三维格子网络。根据使用的指标,这些晶格网络也具有小世界的属性,表明晶格的象征足以被归类为小世界网络。我们的结果解释了为什么FRC网络具有小世界的属性,并为模拟逼真的FRC网络提供框架。

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