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大鼠不同肾单位群体的压力-流量关系。

The pressure-flow relationship of different nephron populations in the rat.

作者信息

Källskog O, Lindbom L O, Ulfendahl H R, Wolgast M

出版信息

Acta Physiol Scand. 1975 Jul;94(3):309-12. doi: 10.1111/j.1748-1716.1975.tb05874.x.

Abstract

The mechanisms behind the autoregulation of the total renal blood flow and the glomerular filtration rate are unclear. In this investigation a modified microsphere technique was applied to measure the blood flow at different depths in the renal cortex during normotensive and hypotensive conditions. No autoregulation was found in the outer cortex while it was well pronounced in the inner one. During similar conditions, glomerular capillary pressure, welling point pressure and intratubular pressure were recorded. By combining these results with the blood flow data, the preglomerular and postglomerular resistances were calculated. It was then found that the preglomerular resistance decreased and the postglomerular resistance increased when the blood pressure was lowered. The results indicate a redistribution of blood flow from the outer parts to the inner parts of the cortex when the blood pressure is decreased. The redistribution of the blood flow might explain the well known linear relationship between the arterial pressure and the urine flow. The single nephron filtration rate of the outermost glomeruli could be calculated and the results seem to indicate a non-equilibrium at the end of the glomerular capillaries.

摘要

肾血流量和肾小球滤过率自动调节背后的机制尚不清楚。在本研究中,应用改良的微球技术来测量正常血压和低血压条件下肾皮质不同深度的血流量。在外皮质未发现自动调节,而在内皮质则表现明显。在类似条件下,记录了肾小球毛细血管压力、涌流点压力和肾小管内压力。通过将这些结果与血流数据相结合,计算了肾小球前和肾小球后的阻力。结果发现,当血压降低时,肾小球前阻力降低,肾小球后阻力增加。结果表明,当血压降低时,血流从皮质的外部重新分布到内部。血流的重新分布可能解释了动脉压与尿流之间众所周知的线性关系。可以计算最外层肾小球的单肾单位滤过率,结果似乎表明肾小球毛细血管末端存在非平衡状态。

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