Chen I I
J Theor Biol. 1984 Nov 7;111(1):115-21. doi: 10.1016/s0022-5193(84)80199-x.
The loop vascular network is found frequently within biological tissue, but a schematic characterization of the loop vascular network is at present difficult to describe. The reason is that the topographical feature of vessel loop can change during maturation. In this article, we treat the mathematical representation of the loop vessel network, and discuss the application of this to the increased vascular resistance in hypertensive animals resulting from microvascular rarefaction. On the other hand, the number of regions into which the tissue plane is divided by n bifurcational tree branches is derived from recurrence relation.
环形血管网络在生物组织中经常出现,但目前难以对其进行示意性描述。原因是血管环的地形特征在成熟过程中会发生变化。在本文中,我们探讨了环形血管网络的数学表示,并讨论了其在微血管稀疏导致的高血压动物血管阻力增加方面的应用。另一方面,组织平面被n个分支树状分支划分的区域数量是通过递推关系得出的。