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使用床边手持式视频显微镜鉴定和定量人体微循环白细胞。

Identification and quantification of human microcirculatory leukocytes using handheld video microscopes at the bedside.

机构信息

Department of Translational Physiology, Academic Medical Center, University of Amsterdam , Amsterdam , The Netherlands.

Department of Experimental Surgery, Academic Medical Center, University of Amsterdam , Amsterdam , The Netherlands.

出版信息

J Appl Physiol (1985). 2018 Jun 1;124(6):1550-1557. doi: 10.1152/japplphysiol.00962.2017. Epub 2018 Mar 8.

Abstract

Leukocyte recruitment and adhesion to the endothelium are hallmarks of systemic inflammation that manifest in a wide range of diseases. At present, no method is available to directly measure leukocyte kinetics at the bedside. In this study, we validate a new method to identify and quantify microcirculatory leukocytes observed by handheld vital microscopy (HVM) using space-time diagram (STD) analysis. Video clips ( n = 59) containing one capillary-postcapillary venule unit where leukocytes could be observed emanating from a capillary into a venule in cardiac surgery patients ( n = 20) were included. STD analysis and manual counting were used to quantify the number of leukocytes (total, rolling, and nonrolling). Pearson's correlation and Bland-Altman analysis were used to determine agreement between the STDs and manual counting. For reproducibility, intra- and interobserver coefficients of variation (CVs) were assessed. Leukocyte (rolling and nonrolling) and red blood cell velocities were assessed. The STDs and manual counting procedures for the quantification of rolling leukocytes showed good agreement ( r = 0.8197, P < 0.0001), with a Bland-Altman analysis mean difference of -0.0 (-6.56; 6.56). The overall intraobserver CV for the STD method was 1.5%. The overall interobserver CVs for the STD and the manual method were 5.6% and 9.4%, respectively. The nonrolling velocity was significantly higher than the rolling velocity (812 ± 519 µm/s vs. 201 ± 149 µm/s, P = 0.001). STD results agreed with the manual counting procedure results, had a better reproducibility, and could assess the leukocyte velocity. STD analysis using bedside HVM imaging presented a new methodology for quantifying leukocyte kinetics and functions in the microcirculation. NEW & NOTEWORTHY In this study, we introduce space-time diagram analysis of sublingual microcirculation imaging using handheld vital microscopy to identify and quantify the presence and kinetics of human microcirculatory leukocytes. We validated the methodology by choosing anatomical units consisting of a capillary connected to a venule, which allowed precise identification of leukocytes.

摘要

白细胞向内皮细胞的募集和黏附是全身炎症的标志,全身炎症表现在广泛的疾病中。目前,没有一种方法可以直接在床边测量白细胞动力学。在这项研究中,我们通过时空图(STD)分析验证了一种使用手持式活体显微镜(HVM)识别和量化微循环白细胞的新方法。包含来自心脏手术患者的一个毛细血管-后毛细血管小静脉单元的视频剪辑(n=59),其中可以观察到白细胞从毛细血管进入小静脉(n=20)。使用 STD 分析和手动计数来量化白细胞数量(总数、滚动和非滚动)。使用 Pearson 相关系数和 Bland-Altman 分析来确定 STD 与手动计数之间的一致性。为了评估重现性,评估了观察者内和观察者间的变异系数(CV)。评估白细胞(滚动和非滚动)和红细胞速度。用于量化滚动白细胞的 STD 和手动计数程序具有良好的一致性(r=0.8197,P<0.0001),Bland-Altman 分析平均差值为-0.0(-6.56;6.56)。STD 方法的总体观察者内 CV 为 1.5%。STD 方法和手动方法的总体观察者间 CV 分别为 5.6%和 9.4%。非滚动速度明显高于滚动速度(812±519 µm/s 与 201±149 µm/s,P=0.001)。STD 结果与手动计数程序结果一致,具有更好的重现性,并且可以评估白细胞速度。使用床边 HVM 成像的 STD 分析为量化微循环中的白细胞动力学和功能提供了一种新方法。

在这项研究中,我们使用手持式活体显微镜的舌下微循环成像引入时空图分析,以识别和量化人类微循环白细胞的存在和动力学。我们通过选择由毛细血管连接到小静脉的解剖单元来验证该方法,这允许精确识别白细胞。

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