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导致多重平衡形成的微血管网络的关键结构特征。

Key Structural Features of Microvascular Networks Leading to the Formation of Multiple Equilibria.

作者信息

Atkinson George, Ben-Ami Yaron, Maini Philip, Pitt-Francis Joe, Byrne Helen

机构信息

Wolfson Centre for Mathematical Biology, Mathematical Institute, University of Oxford, Woodstock Rd, Oxford, Oxfordshire, OX2 6GG, UK.

Department of Computer Science, University of Oxford, Parks Rd, Oxford, Oxfordshire, OX1 3QG, UK.

出版信息

Bull Math Biol. 2025 Jan 23;87(2):30. doi: 10.1007/s11538-024-01404-y.

Abstract

We analyse mathematical models of blood flow in two simple vascular networks in order to identify structural features that lead to the formation of multiple equilibria. Our models are based on existing rules for blood rheology and haematocrit splitting. By performing bifurcation analysis on these simple network flow models, we identify a link between the changing flow direction in key vessels and the existence of multiple equilibria. We refer to these key vessels as redundant vessels, and relate the maximum number of equilibria with the number of redundant vessels. We vary geometric parameters of the two networks, such as vessel length ratios and vessel diameters, to demonstrate that equilibria are uniquely defined by the flow in the redundant vessels. Equilibria typically emerge in sets of three, each having a different flow characteristic in one of the network's redundant vessels. For one of the three equilibria, the flow within the relevant redundant vessel will be smaller in magnitude than the other two and the redundant vessel will contain few Red Blood Cells (RBCs), if any. For the other two equilibria, the redundant vessel contains RBCs and significant flow in the two available directions. These structural features of networks provide a useful geometric property when studying the equilibria of blood flow in microvascular networks.

摘要

我们分析了两个简单血管网络中的血流数学模型,以确定导致多重平衡形成的结构特征。我们的模型基于现有的血液流变学和血细胞比容分流规则。通过对这些简单的网络流动模型进行分岔分析,我们确定了关键血管中血流方向的变化与多重平衡的存在之间的联系。我们将这些关键血管称为冗余血管,并将平衡的最大数量与冗余血管的数量联系起来。我们改变两个网络的几何参数,如血管长度比和血管直径,以证明平衡由冗余血管中的血流唯一确定。平衡通常以三个一组的形式出现,每个平衡在网络的一个冗余血管中具有不同的流动特性。对于这三个平衡中的一个,相关冗余血管内的血流幅度将小于其他两个平衡,并且该冗余血管中几乎不会含有红细胞(RBC),如果有的话。对于其他两个平衡,冗余血管中含有红细胞并且在两个可用方向上有显著血流。网络的这些结构特征在研究微血管网络中血流的平衡时提供了一个有用的几何特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/507a/11757897/175207f98182/11538_2024_1404_Fig1_HTML.jpg

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