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连续测量肾小管容积变化对管腔渗透压阶跃变化的响应。

The continuous measurement of tubular volume changes in response to step changes in contraluminal osmolality.

作者信息

Carpi-Medina P, Lindemann B, González E, Whittembury G

出版信息

Pflugers Arch. 1984 Apr;400(4):343-8. doi: 10.1007/BF00587530.

Abstract

A new method to measure time dependent (t) volume (V) changes in proximal straight tubules (PST) is described. V is calculated from diameter (d) measurements for which a video camera and an integrating circuit are used. A tubular image of high optical contrast is recorded with the TV camera such that the scan lines run crosswise to the tubule. The video signal is analyzed by a special processor which adds 225 tubular diameters of each TV frame and feeds this analog signal to a pen recorder. The fractional error in d measurements is 10(-3). Diameter changes of less than 0.05 micron can be detected, as compared to the usual error of a single measurement of about 0.4 micron. Pcbos, the osmotic water permeability of the contraluminal cell membrane was measured by setting up osmotic steps across it in less than 0.1 s and following the ensuing delta d/delta t. The time delay between solution change and the linear part of the osmotic response was 0.51 +/- 0.05 s. Pcbos was found to be 50.4 (+/- 8.7) X 10(-4) cm3.cm-2 of basement membrane area .s-1.osmolar-1.

摘要

本文描述了一种测量近端直小管(PST)随时间(t)变化的容积(V)的新方法。V是根据直径(d)测量值计算得出的,测量d时使用了摄像机和积分电路。用电视摄像机记录高光学对比度的管状图像,使扫描线与小管交叉。视频信号由一个特殊处理器进行分析,该处理器将每个电视帧的225个管状直径相加,并将这个模拟信号输入笔录仪。d测量的分数误差为10(-3)。与单次测量通常约0.4微米的误差相比,能检测到小于0.05微米的直径变化。通过在不到0.1秒的时间内跨对侧细胞膜建立渗透梯度并跟踪随后的Δd/Δt来测量对侧细胞膜的渗透水通透性(Pcbos)。溶液变化与渗透反应线性部分之间的时间延迟为0.51±0.05秒。发现Pcbos为50.4(±8.7)×10(-4)立方厘米·平方厘米-2·基底膜面积·秒-1·渗透压-1。

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