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静息骨骼肌中由单个小动脉供血的毛细血管网络内红细胞灌注的异质性。

Heterogeneity of red blood cell perfusion in capillary networks supplied by a single arteriole in resting skeletal muscle.

作者信息

Ellis C G, Wrigley S M, Groom A C

机构信息

Department of Medical Biophysics, University of Western Ontario, London, Canada.

出版信息

Circ Res. 1994 Aug;75(2):357-68. doi: 10.1161/01.res.75.2.357.

Abstract

Flow heterogeneity within capillary beds may have two sources: (1) unequal distribution of red blood cell (RBC) supply among arterioles and (2) unique properties of RBC flow in branching networks of capillaries. Our aim was to investigate the capillary network as a source of both spatial and temporal heterogeneity of RBC flow. Five networks, each supplied by a single arteriole, were studied in frog sartorius muscle (one network per frog) by intravital video microscopy. Simultaneous data on RBC velocity (millimeters per second), lineal density (RBCs per millimeter), and supply rate (RBCs per second) were measured continuously (10 samples per second) from video recordings in 5 to 10 capillary segments per network for 10 minutes by use of automated computer analysis. To quantify heterogeneity, mean values from successive 10-second intervals were tabulated for each flow parameter in each capillary segment (ie, portion of capillary between successive bifurcations), and percent coefficient of variation (SD/mean.100%) was calculated for (1) spatial heterogeneity among vessels (CVs) every 10 seconds and for the entire 10-minute sample and (2) temporal heterogeneity within vessels for every capillary segment and for the mean flow parameter. Analysis of these data indicates that (1) capillary networks are a significant source of both spatial and temporal flow heterogeneity, and (2) continuous redistributions of flow occur within networks, resulting in substantial temporal changes in CVs, although a persistent spatial heterogeneity of perfusion still exists on a 10-minute basis. In most networks, CVs decreased as supply rate within the network increased, thus indicating that rheology plays a significant role in determining the perfusion heterogeneity.

摘要

毛细血管床内的血流异质性可能有两个来源

(1)小动脉之间红细胞(RBC)供应分布不均,以及(2)毛细血管分支网络中RBC流动的独特特性。我们的目的是研究毛细血管网络作为RBC流动的空间和时间异质性的一个来源。通过活体视频显微镜,在青蛙缝匠肌中研究了五个网络,每个网络由一条小动脉供血(每只青蛙一个网络)。使用自动化计算机分析,从每个网络中5至10个毛细血管段的视频记录中,连续(每秒10个样本)测量RBC速度(毫米每秒)、线性密度(每毫米RBC数)和供应率(每秒RBC数)的数据,持续10分钟。为了量化异质性,将每个毛细血管段(即连续分支之间的毛细血管部分)中每个血流参数连续10秒间隔的平均值制成表格,并计算(1)每10秒以及整个10分钟样本中血管之间的空间异质性(CVs)和(2)每个毛细血管段以及平均血流参数的血管内时间异质性的变异系数百分比(SD/mean.100%)。对这些数据的分析表明:(1)毛细血管网络是空间和时间血流异质性的重要来源,并且(2)网络内发生血流的持续重新分布,导致CVs出现显著的时间变化,尽管在10分钟的基础上仍存在持续的灌注空间异质性。在大多数网络中,随着网络内供应率的增加,CVs降低,因此表明流变学在确定灌注异质性方面起着重要作用。

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