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首页> 外文期刊>Journal of Microscopy >In situ assessment of the renal microcirculation in mechanically ventilated rats using sidestream dark-field imaging
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In situ assessment of the renal microcirculation in mechanically ventilated rats using sidestream dark-field imaging

机译:使用侧流暗场成像原位评估机械通气大鼠的肾脏微循环

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摘要

For microcirculation research there is a need for baseline data and feasibility protocols describing microcirculation of various organs. The aim of our study was to examine the reliability and reproducibility of sidestream dark-field (SDF) imaging within the renal cortical microcirculation in rats. Renal microcirculation was observed using SDF probe placed on the exposed renal surface via the upper midline laparotomy. Video sequences recorded intermittently in short apneic pauses were analyzed off-line by using AVA 3.0 software (MicroVision Medical, Amsterdam, the Netherlands). Results are expressed as mean (SD) or median (25-75% percentiles). We obtained 60 clear sequences from all recorded analyzable videos from all the animals. The total small vessel and all vessel density (in mm.mm(-2)) were (28.79 0.40) and (28.95 0.40), respectively. The perfused small and all vessel density were (28.79 0.40) and (28.95 +/- 0.40), respectively. The DeBacker Score was (19.14 +/- 0.43), the proportion of perfused vessels was 100% (100-100%) and the microvascular flow index was 3.49 (3-3.75). We conclude SDF imaging provides a reliable method to examine the renal microvascular bed in vivo and thus can be used for the study of the renal cortical vascular network in various experimental diseases models and clinical settings.
机译:对于微循环研究,需要描述各种器官微循环的基线数据和可行性方案。我们研究的目的是检查大鼠肾皮质微循环中侧流暗场(SDF)成像的可靠性和可重复性。使用通过上中线剖腹术放置在暴露的肾脏表面的SDF探针观察到肾脏微循环。使用AVA 3.0软件(MicroVision Medical,阿姆斯特丹,荷兰)离线分析在短暂的呼吸暂停中间歇性记录的视频序列。结果表示为平均值(SD)或中位数(25-75%百分位数)。我们从所有动物的所有记录的可分析视频中获得了60条清晰的序列。整个小血管和所有血管密度(以mm.mm(-2)计)分别为(28.79 0.40)和(28.95 0.40)。灌注的小血管密度和所有血管密度分别为(28.79 0.40)和(28.95 +/- 0.40)。 DeBacker评分为(19.14 +/- 0.43),灌注血管的比例为100%(100-100%),微血管流动指数为3.49(3-3.75)。我们得出结论,SDF成像提供了一种在体内检查肾微血管床的可靠方法,因此可用于研究各种实验疾病模型和临床环境中的肾皮质血管网络。

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