Tyssebotn I, Kirkebø A
Acta Physiol Scand. 1979 Aug;106(4):385-93. doi: 10.1111/j.1748-1716.1979.tb06418.x.
Blood flow distribution in the renal cortex was investigated in control and during i.a. infusion of dopamine (DA) and acetylcholine (Ach) in dogs. Local blood flow in outer cortex (OCF) and in inner cortex (ICF) was measured by platinum electrodes detecting hydrogen washout rate in tissue. Mean cortical blood flow measured by hydrogen washout rate in the renal vein (CFV) was compared with renal arterial blood flow (RAF) measured by electromagnetic flowmeter. With electrodes of 0.05-0.2 mm diameter control blood flow rates in outer and inner cortex were 4.57 +/- (S.D.) 1.73 ml/min.g, and 4.35 +/- 0.57 ml/min.g, which is higher than found using 0.2-0.5 mm electrodes in this and previous studies. OCF and ICF increased proportionally during intraarterial infusion of DA or Ach. The increase in local blood flow per unit volume was about 20% less than the increase in RAF, most likely due to an increase in renal volume and a reduced vasodilatory response in the surrounding of some electrodes. CFV rose almost to the same degree as RAF, showing a diffusion equilibrium for hydrogen gas even at maximal flow rate. During vasoconstriction induced by high doses of DA, OCF and ICF fell proportionately. Thus, equal vascular responses in outer and inner cortex were observed during both vasodilator and vasoconstrictor infusion. This indicates that changes in sodium excretion with renal blood flow may not be associated with a redistribution of cortical peritubular blood flow.
在犬类动物中,研究了对照组以及在动脉内输注多巴胺(DA)和乙酰胆碱(Ach)期间肾皮质的血流分布情况。通过铂电极检测组织中的氢洗脱率来测量外皮质(OCF)和内皮质(ICF)的局部血流。将通过肾静脉中氢洗脱率测量的平均皮质血流(CFV)与通过电磁流量计测量的肾动脉血流(RAF)进行比较。使用直径为0.05 - 0.2毫米的电极时,外皮质和内皮质的对照血流速率分别为4.57±(标准差)1.73毫升/分钟·克和4.35±0.57毫升/分钟·克,这高于本研究及之前研究中使用直径为0.2 - 0.5毫米电极时所发现的数值。在动脉内输注DA或Ach期间,OCF和ICF成比例增加。单位体积局部血流的增加比RAF的增加约少20%,这很可能是由于肾体积增加以及一些电极周围血管舒张反应降低所致。CFV几乎与RAF上升到相同程度,表明即使在最大流速下氢气也达到了扩散平衡。在高剂量DA诱导的血管收缩期间,OCF和ICF成比例下降。因此,在输注血管舒张剂和血管收缩剂期间,在外皮质和内皮质中均观察到了相等的血管反应。这表明肾血流引起的钠排泄变化可能与皮质肾小管周围血流的重新分布无关。