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首页> 外文期刊>Microvascular Research: An International Journal >Digital imaging system and virtual instrument platform for measuring hydraulic conductivity of vascular endothelial monolayers.
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Digital imaging system and virtual instrument platform for measuring hydraulic conductivity of vascular endothelial monolayers.

机译:用于测量血管内皮单层水力传导率的数字成像系统和虚拟仪器平台。

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摘要

We have developed an automated, digital imaging system, controlled by two virtual instruments, to measure hydraulic conductivity (Lp) of cultured endothelial monolayers. Live digital images of multiple independent experiments were captured by custom-designed video processing software running in National Instruments LabVIEW 6.1. Fluid displacement data are automatically displayed in real time as both volumetric flux (Jv) and hydraulic conductivity (Lp). A separate data analysis program is used to display permeability values from stored displacement measurements and displays Jv or Lp of each monolayer. Optional statistical filters have been included to aid in data analysis. This new digital permeability system is able to measure flux rates over a dynamic range from 10(-9) cm/s/cm H2O to 10(-4) cm/s/cm H2O. Values obtained for cultured lung microvascular Lp are nearly identical to other cultured endothelial monolayers and also to values obtained in-vivo using the Landis-Michel technique and the split-drop method. The use of a commercially available platform allows the system configuration to be easily modified to suit the experimental needs. The technical development of this system is described in detail.
机译:我们开发了由两个虚拟仪器控制的自动化数字成像系统,以测量培养的内皮单层的水力传导率(Lp)。通过在National Instruments LabVIEW 6.1中运行的定制设计的视频处理软件,可以捕获多个独立实验的实时数字图像。流体排量数据自动以体积通量(Jv)和水力传导率(Lp)实时显示。单独的数据分析程序用于显示存储的位移测量结果的渗透率值,并显示每个单层的Jv或Lp。包括了可选的统计过滤器,以辅助数据分析。这种新型的数字磁导率系统能够在10(-9)cm / s / cm H2O到10(-4)cm / s / cm H2O的动态范围内测量通量率。培养的肺微血管Lp的值几乎与其他培养的内皮单层相同,也与使用Landis-Michel技术和分滴法在体内获得的值几乎相同。使用市售平台可轻松修改系统配置,以满足实验需求。详细描述了该系统的技术发展。

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