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大鼠和犬的肾小体前阻力与肾小球灌注

Preglomerular resistance and glomerular perfusion in the rat and dog.

作者信息

Chenitz W R, Nevins B A, Hollenberg N K

出版信息

Am J Physiol. 1976 Sep;231(3):961-6. doi: 10.1152/ajplegacy.1976.231.3.961.

Abstract

Glomerular blood flow in the rat, measured with radioactive microspheres, averaged 233 +/- 59 nl/min per glomerulus, significantly less than the glomerular flow rate in the dog (568 +/- 115; P less than 0.005). The difference in glomerular blood flow rate could not be attributed to differences in mean or cortical flow rates, the fraction of acrdiac output received, cardiac output normalized to body weight, or the fractional distribution of blood flow or glomeruli from outer to inner cortex in the two species. The size of microspheres reaching the glomerulus, however, was significantly larger in the dog than in the rat (P less than 0.0005) suggesting that afferent arterioles were larger in the dog than rat. The difference in afferent resistance calculated from the size of microspheres delivered to the glomeruli was larger than the difference in glomerular blood flow. With a similar arterial pressure, a lower afferent resistance suggests a higher glomerular capillary pressure in the dog, consistent with a number of suggestions that filtration equilibrium is less likely in this species.

摘要

用放射性微球测量的大鼠肾小球血流量平均为每个肾小球233±59 nl/分钟,显著低于狗的肾小球血流量(568±115;P<0.005)。肾小球血流量的差异不能归因于平均或皮质血流量、接受的心输出量分数、按体重归一化的心输出量,或两种物种中外皮质到内皮质的血流或肾小球的分数分布差异。然而,到达狗肾小球的微球尺寸明显大于大鼠(P<0.0005),这表明狗的入球小动脉比大鼠的大。根据输送到肾小球的微球尺寸计算出的入球阻力差异大于肾小球血流量差异。在相似的动脉压下,较低的入球阻力表明狗的肾小球毛细血管压较高,这与许多认为该物种滤过平衡可能性较小的观点一致。

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