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体内测量的肺液提取和渗透传导率σK。

Pulmonary fluid extraction and osmotic conductance, sigmaK, measured in vivo.

作者信息

Karch J M, Lee J S

机构信息

Department of Biomedical Engineering, University of Virginia, Charlottesville, Virginia 22908, USA.

出版信息

J Appl Physiol (1985). 1998 Mar;84(3):769-81. doi: 10.1152/jappl.1998.84.3.769.

Abstract

The change in aortic blood density in an in vivo rabbit preparation was measured to assess fluid movement at the pulmonary capillaries caused by infusion of hypertonic solution (NaCl, urea, glucose, sucrose, or raffinose in isotonic saline) into the vena cava over 20 s. The hypertonic disturbance increased the plasma osmotic pressure by </=30 mosmol/l. The density change indicates that the fluid extraction from the lung tissue was completed within 10 s. It was followed by a fluid filtration into the lung tissue and then an extraction and filtration from peripheral organs. An exchange model with flow dispersion yields two equations to estimate the osmotic conductance (sigmaK; where sigma is the reflection coefficient of the test solute and K is the filtration coefficient including the total capillary surface area), and the tissue fluid volume from the area and first moment of the measured density change over the extraction phase. The values of sigmaK are 1.40 +/- 0.11, 1.00 +/- 0. 10, 1.71 +/- 0.10, 2.60 +/- 0.23, and 3.73 +/- 0.34 (SE) ml . h-1 . mosmol-1 . l . g-1 for NaCl, urea, glucose, sucrose, and raffinose, respectively. Consistent with the model prediction, the tissue fluid volume (0.28 +/- 0.04 ml/g wet lung tissue) was independent of the solute used. This value suggests that all fluid spaces in the alveolar septa participate in the process of fluid extraction due to an increase in plasma osmotic pressure.

摘要

通过在20秒内将高渗溶液(等渗盐水中的氯化钠、尿素、葡萄糖、蔗糖或棉子糖)注入兔腔静脉,测量了兔活体标本中主动脉血密度的变化,以评估肺毛细血管处的液体流动情况。高渗干扰使血浆渗透压升高≤30 mosmol/l。密度变化表明,肺组织中的液体提取在10秒内完成。随后是液体滤入肺组织,然后是从外周器官进行提取和滤过。一个具有流动扩散的交换模型产生两个方程,用于从提取阶段测量的密度变化的面积和一阶矩估计渗透传导率(sigmaK;其中sigma是测试溶质的反射系数,K是包括总毛细血管表面积的滤过系数)和组织液体积。氯化钠、尿素、葡萄糖、蔗糖和棉子糖的sigmaK值分别为1.40±0.11、1.00±0.10、1.71±0.10、2.60±0.23和3.73±0.34(SE)ml·h-1·mosmol-1·l·g-1。与模型预测一致,组织液体积(0.28±0.04 ml/g湿肺组织)与所用溶质无关。该值表明,由于血浆渗透压升高,肺泡隔中的所有液体间隙都参与了液体提取过程。

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