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有效循环血量与舌下红细胞速度及微血管压差的关系:一项临床研究与计算流体动力学建模

Relationship of Effective Circulating Volume with Sublingual Red Blood Cell Velocity and Microvessel Pressure Difference: A Clinical Investigation and Computational Fluid Dynamics Modeling.

作者信息

Chalkias Athanasios, Xenos Michalis

机构信息

Department of Anesthesiology, Faculty of Medicine, University of Thessaly, 41500 Larisa, Greece.

Outcomes Research Consortium, Cleveland, OH 44195, USA.

出版信息

J Clin Med. 2022 Aug 20;11(16):4885. doi: 10.3390/jcm11164885.

Abstract

The characteristics of physiologic hemodynamic coherence are not well-investigated. We examined the physiological relationship between circulating blood volume, sublingual microcirculatory perfusion, and tissue oxygenation in anesthetized individuals with steady-state physiology. We assessed the correlation of mean circulatory filling pressure analogue (Pmca) with sublingual microcirculatory perfusion and red blood cell (RBC) velocity using SDF+ imaging and a modified optical flow-based algorithm. We also reconstructed the 2D microvessels and applied computational fluid dynamics (CFD) to evaluate the correlation of Pmca and RBC velocity with the obtained pressure and velocity fields in microvessels from CFD (pressure difference, (Δp)). Twenty adults with a median age of 39.5 years (IQR 35.5−44.5) were included in the study. Sublingual velocity distributions were similar and followed a log-normal distribution. A constant Pmca value of 14 mmHg was observed in all individuals with sublingual RBC velocity 6−24 μm s−1, while a Pmca < 14 mmHg was observed in those with RBC velocity > 24 μm s−1. When Pmca ranged between 11 mmHg and 15 mmHg, Δp fluctuated between 0.02 Pa and 0.1 Pa. In conclusion, the intact regulatory mechanisms maintain a physiological coupling between systemic hemodynamics, sublingual microcirculatory perfusion, and tissue oxygenation when Pmca is 14 mmHg.

摘要

生理血流动力学相干性的特征尚未得到充分研究。我们研究了稳态生理状态下麻醉个体的循环血容量、舌下微循环灌注和组织氧合之间的生理关系。我们使用SDF +成像和基于光流的改进算法评估了平均循环充盈压类似物(Pmca)与舌下微循环灌注和红细胞(RBC)速度之间的相关性。我们还重建了二维微血管并应用计算流体动力学(CFD)来评估Pmca和RBC速度与CFD中微血管获得的压力和速度场(压力差,(Δp))之间的相关性。该研究纳入了20名成年人,年龄中位数为39.5岁(IQR 35.5 - 44.5)。舌下速度分布相似,呈对数正态分布。在所有舌下RBC速度为6 - 24μm s−1的个体中观察到Pmca值恒定为14 mmHg,而在RBC速度> 24μm s−1的个体中观察到Pmca < 14 mmHg。当Pmca在11 mmHg和15 mmHg之间时,Δp在0.02 Pa和0.1 Pa之间波动。总之,当Pmca为14 mmHg时,完整的调节机制维持了全身血流动力学、舌下微循环灌注和组织氧合之间的生理耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ede/9410298/1fc72b875a3e/jcm-11-04885-g001.jpg

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