Magder S
Division of Critical Care, Royal Victoria Hospital, Montreal, Quebec, Canada.
Am J Physiol. 1990 Dec;259(6 Pt 2):H1789-95. doi: 10.1152/ajpheart.1990.259.6.H1789.
The time constant of venous drainage (tau v) of a vascular bed is an important determinant of the change in regional volume that will occur with a change in blood flow or venous pressure (Pv). Therefore, to measure tau v of the dog hindlimb, the vasculature was isolated and perfused with a pump. Inflow and outflow were measured with electromagnetic flow probes. Blood volume was changed (delta V) by changing flow (delta Q), and a double-occlusion procedure was used to obtain the venous elastic recoil pressure (Pel) from the plateau of Pv. Venous resistance (Rv), compliance (Cv), and tau v could then be calculated. Rv was 7.7 +/- 1.4 mmHg.ml-1.min.100 g-1 and Cv was 0.59 +/- 0.25 ml/mmHg, tau v calculated from the product of Rv and Cv was 4.20 +/- 1.58 s and from the ratio of delta V to delta Q was 4.95 +/- 1.53 s (P = NS) at a mean Pel of 17.6 +/- 3.7 mmHg. delta V was also produced by changing Pv; the average tau v (1.95 +/- 0.37 s), was shorter than that with changes in flow. Finally, a ramp increase in flow was used to calculate tau v from the time delay between inflow and outflow. tau v by this method was longer (6.06 +/- 1.70 s) and was probably influenced by the change in Pv. In conclusion, the hindlimb has a short tau v of venous drainage and would not be expected to store large volumes of blood even with large increases in blood flow.
血管床的静脉引流时间常数(τv)是区域容积变化的重要决定因素,该变化会随着血流或静脉压力(Pv)的改变而发生。因此,为了测量犬后肢的τv,将其血管系统分离并用泵进行灌注。使用电磁流量探头测量流入和流出量。通过改变流量(ΔQ)来改变血容量(ΔV),并采用双闭塞程序从Pv的平台期获取静脉弹性回缩压力(Pel)。然后可以计算静脉阻力(Rv)、顺应性(Cv)和τv。Rv为7.7±1.4 mmHg·ml-1·min·100 g-1,Cv为0.59±0.25 ml/mmHg,由Rv和Cv的乘积计算得出的τv为4.20±1.58 s,由ΔV与ΔQ的比值计算得出的τv为4.95±1.53 s(P=无显著性差异),平均Pel为17.6±3.7 mmHg。ΔV也可通过改变Pv产生;平均τv(1.95±0.37 s)比流量改变时的τv短。最后,采用流量的斜坡式增加,根据流入和流出之间的时间延迟来计算τv。通过这种方法得出的τv更长(6.06±1.70 s),可能受到Pv变化的影响。总之,后肢的静脉引流τv较短,即使血流大幅增加,预计也不会储存大量血液。