首页> 外文期刊>Microcirculation: The official journal of the Microcirculatory Society >A Simple 'Streak Length Method' for Quantifying and Characterizing Red Blood Cell Velocity Profiles and Blood Flow in Rat Skeletal Muscle Arterioles
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A Simple 'Streak Length Method' for Quantifying and Characterizing Red Blood Cell Velocity Profiles and Blood Flow in Rat Skeletal Muscle Arterioles

机译:简单的“条纹长度方法”用于量化和表征大鼠骨骼肌小动脉中的红细胞速度分布和血流

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摘要

Objectives: To develop a valid experimental method for quantifying blood flow in continuously branching skeletal muscle arterioles, and to derive an empirical relationship between velocity ratio (V Max/V Mean) and arteriolar diameter. Methods: We evaluated arteriolar trees using IVVM of rat gluteus maximus muscle and developed a method to acquire single fluorescent-labeled RBC velocities across arteriolar lumens to create velocity profiles. These data were used to calculate the blood flow for 37 vessel segments (diameters: 21-115μm). Results: Mass balance at arteriolar bifurcations had 0.6±3.2% error. Velocity ratios ranged from 1.35 to 1.98 and were positively correlated with diameter (p0.0001), and V RBC profiles were blunted with decreasing diameter. Conclusions: We present a means for quantifying blood flow in continuously branching skeletal muscle arterioles. Further, we provide an equation for calculating velocity ratios based on arteriolar diameter, which may be used by others for blood flow calculations.
机译:目的:建立量化连续分支骨骼肌小动脉血流量的有效实验方法,并得出速度比(V Max / V Mean)与小动脉直径之间的经验关系。方法:我们使用大鼠臀大肌的IVVM评估了小动脉树,并开发了一种方法来获取跨小动脉腔的单个荧光标记的RBC速度以创建速度分布。这些数据用于计算37个血管段(直径:21-115μm)的血流量。结果:小动脉分叉处的质量平衡误差为0.6±3.2%。速度比在1.35至1.98范围内,并且与直径呈正相关(p <0.0001),并且随着直径的减小,V RBC轮廓变钝。结论:我们提出了一种量化连续分支骨骼肌小动脉血流的方法。此外,我们提供了一个基于小动脉直径来计算速度比的方程,该方程可被其他人用于血流量计算。

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