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A reassessment of mercury in silastic strain gauge plethysmography for microvascular permeability assessment in man.

机译:硅弹性应变片体积描记器中汞的重新评估用于评估人体的微血管通透性。

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摘要

1. We have used non-invasive mercury in a silastic strain gauge system to assess the effect of pressure step size, on the time course of the rapid volume response (RVR) to occlusion pressure. We also obtained values for hydraulic conductance (Kf), isovolumetric venous pressure (Pvi) and venous pressure (Pv) in thirty-five studies on the legs of twenty-three supine control subjects. 2. The initial rapid volume response to small (9.53 +/- 0.45 mmHg, mean +/- S.E.M.) stepped increases in venous pressure, the rapid volume response, could be described by a single exponential of time constant 15.54 +/- 1.14 s. 3. Increasing the size of the pressure step, to 49.8 +/- 1.1 mmHg, gave a larger value for the RVR time constant (mean 77.3 +/- 11.6 s). 4. We propose that the pressure-dependent difference in the duration of the rapid volume response, in these two situations, might be due to a vascular smooth muscle-based mechanism, e.g. the veni-arteriolar reflex. 5. The mean (+/- S.E.M.) values for Kf, Pvi and Pv were 4.27 +/- 0.18 (units, ml min-1 (100 g)-1 mmHg-1 x 10(-3), 21.50 +/- 0.81 (units, mmHg) and 9.11 +/- 0.94 (units, mmHg), respectively. 6. During simultaneous assessment of these parameters in arms and legs, it was found that they did not differ significantly from one another. 7. We propose that the mercury strain gauge system offers a useful, non-invasive means of studying the mechanisms governing fluid filtration in human limbs.
机译:1.我们在硅弹性应变仪系统中使用了非侵入性汞,以评估压力步长大小对闭塞压力的快速体积响应(RVR)的时间过程的影响。我们还对二十三个仰卧位对照受试者的腿部进行了三十五项研究,得出了水力传导率(Kf),等容静脉压(Pvi)和静脉压(Pv)的值。 2.初始快速的体积响应(9.53 +/- 0.45 mmHg,平均+/- SEM)逐步升高的静脉压,快速的体积响应可以用时间常数15.54 +/- 1.14 s的单个指数来描述。 3.将压力步长增加到49.8 +/- 1.1 mmHg,可以得到更大的RVR时间常数值(平均77.3 +/- 11.6 s)。 4.我们建议,在这两种情况下,快速体积反应的持续时间中与压力有关的差异可能是由于基于血管平滑肌的机制引起的,例如小静脉反射。 5. Kf,Pvi和Pv的平均值(+/- SEM)为4.27 +/- 0.18(单位,ml min-1(100 g)-1 mmHg-1 x 10(-3),21.50 +/-分别为0.81(单位,mmHg)和9.11 +/- 0.94(单位,mmHg)6.在同时评估手臂和腿部这些参数时,发现它们之间没有显着差异7.我们建议汞应变仪系统提供了一种有用的,非侵入性的方法来研究控制人体四肢中液体过滤的机制。

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