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首页> 外文期刊>Microvascular Research: An International Journal >Red blood cell velocity and volumetric flow assessment by enhanced high-resolution laser Doppler imaging in separate vessels of the hamster cheek pouch microcirculation.
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Red blood cell velocity and volumetric flow assessment by enhanced high-resolution laser Doppler imaging in separate vessels of the hamster cheek pouch microcirculation.

机译:通过增强的高分辨率激光多普勒成像技术在仓鼠脸袋微循环的单独血管中对红细胞速度和体积流量进行评估。

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摘要

An enhanced high-resolution laser Doppler imager (EHR-LDI), configured to fit the demands of a measurement area containing separate microvessels, was evaluated for perfusion measurements in hamster cheek pouch preparations during ischemia, reperfusion, and pharmacologically induced vasodilation and vasoconstriction. Measurements in separate microvessels where the laser beam was smaller than the vessel diameter were referred to as red blood cell (RBC) velocity estimates, as previously validated in vitro, whereas a relative flow index, RFI (mean RBC velocity/tissue area), was introduced as a volumetric flow measure. Microvessel diameter and RBC velocity changes during ischemia, reperfusion, as well as during vasoconstriction and vasodilation correlated to the data obtained from the microscope. Correspondingly, during the described provocations anticipated volumetric flow changes were registered as changes in the RFI. When data on intravessel RBC velocity profiles are presented they reflect a parabolic flow profile usually seen in this size microvessel. The EHR-LDI appears a promising tool for investigation of the microvasculature, as it almost simultaneously provides information on relative changes of both in vivo RBC velocity and volumetric flow (RFI), although the latter estimate needs to be further refined. Copyright 1999 Academic Press.
机译:评估了增强型高分辨率激光多普勒成像仪(EHR-LDI),其配​​置为适合包含单独微血管的测量区域,在缺血,再灌注以及药理诱导的血管舒张和血管收缩期间,对仓鼠颊囊制剂中的灌注测量进行了评估。如先前在体外验证的,在激光束小于血管直径的单独微血管中进行的测量称为红细胞(RBC)速度估计,而相对流指数RFI(平均RBC速度/组织面积)为作为体积流量测量引入。缺血,再灌注以及血管收缩和血管舒张期间的微血管直径和RBC速度变化与从显微镜获得的数据相关。相应地,在所述挑衅期间,预期的体积流量变化被记录为RFI中的变化。当提供关于血管内RBC速度分布的数据时,它们反映了通常在这种大小的微血管中看到的抛物线流动分布。 EHR-LDI似乎是研究微血管的有前途的工具,因为它几乎同时提供了体内RBC速度和体积流量(RFI)相对变化的信息,尽管后者的估计需要进一步完善。版权所有1999 Academic Press。

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