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通过电视显微镜连续测量血管直径。

Continuous measurement of vascular diameters via television microscopy.

作者信息

Devaney M J, Rathke J E, Bartel R W, Mcdonald J E, Wiegman D L, Miller F N, Harris P D

出版信息

ISA Trans. 1976;15(1):73-8.

PMID:950283
Abstract

In the past 10 years, microcirculation studies have emphasized quantitative measurements of microvascular diameters to characterize in vivo small vessel responses to experimental forcings such as hemorrhage, anesthesia, and hypoxia. We have developed an instrument to obtain continuous diameter measurements of a small artery and vein (40-200 mu) via closed-circuit television microscopy. The outputs are analog voltages proportional to the vessel diameters. Video processing is limited to two image areas termed "windows," which are defined by markers on the monitor and positioned over separate vertically aligned vessels. Each vessel, which appears darker than the surrounding tissue, is located by comparing the video signal to a reference voltage that adapts to changes in the relative contrast within the window. In the presence of a vessel, a ramp voltage is generated, the peak value of which is proportional to the vessel diameter. These peaks are averaged over the 15-video lines of the window and over several video frames to reduce noise sensitivity. In order to accommodate preparation movement such as skeletal muscle contraction, window position and width automatically adapt to changes in vessel position and width. Visual verification of system performance is provided by clamping the video signal to white on that portion of the image which the instrument identifies as vessel.

摘要

在过去10年中,微循环研究着重于对微血管直径进行定量测量,以表征体内小血管对诸如出血、麻醉和缺氧等实验应激的反应。我们开发了一种仪器,通过闭路电视显微镜获得小动脉和小静脉(40 - 200微米)的连续直径测量值。输出为与血管直径成比例的模拟电压。视频处理限于两个称为“窗口”的图像区域,由监视器上的标记定义,并定位在单独的垂直对齐的血管上。每个比周围组织暗的血管,通过将视频信号与适应窗口内相对对比度变化的参考电压进行比较来定位。在有血管的情况下,会产生一个斜坡电压,其峰值与血管直径成比例。这些峰值在窗口的15条视频线以及几个视频帧上进行平均,以降低噪声敏感性。为了适应诸如骨骼肌收缩等标本移动,窗口位置和宽度会自动适应血管位置和宽度的变化。通过将仪器识别为血管的图像部分的视频信号钳位为白色,来提供系统性能的视觉验证。

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