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肾脏血流的血管结构依赖性的数值模拟。

Numerical simulation of the vascular structure dependence of blood flow in the kidney.

机构信息

Graduate School of Science and Engineering, Chiba University, 1-33 Yayoi, Inage, Chiba 263-8522, Japan.

Graduate School of Engineering, Chiba University, 1-33 Yayoi, Inage, Chiba 263-8522, Japan.

出版信息

Med Eng Phys. 2022 Jun;104:103809. doi: 10.1016/j.medengphy.2022.103809. Epub 2022 Apr 26.

Abstract

A numerical simulation was performed to clarify renal blood flow determination by the vascular structures. Large and small vessels were modeled as symmetric and asymmetric branching vessels, respectively, with simple geometries to parameterize the vascular structures. Modeling individual vessels as straight pipes, Murray's law was used to determine the vessel diameters. Blood flow in the vascular structure was calculated by network analysis based on Hagen-Poiseuille's law. Blood flow simulations for a vascular network segment demonstrated that blood flow rate and pressure vary within the same-generation vessels because of an asymmetric vessel branch while they generally tend to decrease with vessel diameter; thus, the standard deviation of flow rate relative to the mean (relative standard deviation [RSD]) increased from 0.4 to 1.0 when the number of the daughter vessels increased from 3 to 10. Blood flow simulations for an entire vascular network of a kidney showed that the vessel number and branching style, rather than Strahler order, are major parameters in successfully reproducing renal blood flow measured in published experiments. The entire vascular network could generate variation in the physiological flow rate in afferent arterioles at 0.2-0.38 in RSD, which is at least compatible with 0.16 by diameter variation within the same-generation vessels.

摘要

进行了数值模拟,以阐明通过血管结构确定肾血流量。将大血管和小血管分别建模为对称和非对称分支血管,采用简单的几何形状对血管结构进行参数化。将单个血管建模为直管道,使用 Murray 定律确定血管直径。基于 Hagen-Poiseuille 定律通过网络分析计算血管结构中的血流量。血管网络段的血流模拟表明,由于血管分支的非对称性,同一代血管内的血流速率和压力会发生变化,而通常随着血管直径的增加而减小;因此,当从 3 个增加到 10 个时,相对标准偏差(RSD)的相对标准偏差(RSD)从 0.4 增加到 1.0。对肾脏整个血管网络的血流模拟表明,血管数量和分支方式而不是 Strahler 顺序是成功再现已发表实验中测量的肾血流量的主要参数。整个血管网络可以在 0.2-0.38 的 RSD 范围内产生入球小动脉的生理流量变化,这至少与同一代血管内的直径变化产生的 0.16 相兼容。

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