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Analysis of effect of renal nerve on kidney functions during sodium restriction by using a mathematical model

机译:用数学模型分析肾神经对钠限制期间肾功能的影响

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In our previous study, the hypothesis that during sodium restriction an increased renal sympathetic nerve activity (RSNA) contributes to decreased sodium excretion was tested by using a cardiovascular model with two kidneys [1]. The RSNA of the left kidney was fixed at its normal steady state value while allowing RSNA in the right kidney to change normally in response to the decreased sodium intake. The results demonstrated that the kidney with intact RSNA excreted less sodium than the RSNA fixed kidney. In this study, the effect of an increased RSNA on kidney functions during a long-term decrease in sodium intake is analyzed by using the same mathematical model. There is no difference between blood flows, afferent and efferent arteriolar resistances, renal vascular resistances, glomerular hydrostatic pressures, glomerular filtration rates, afferent arteriolar pressures, myogenic responses, release of nitric oxide, filtered sodium in the intact and the fixed-RSNA kidneys during sodium restriction. However, it is seen that proximal tubule sodium reabsorption and renin secretion from the intact kidney is more than the fixed-RSNA kidney. Thus, the reason why the intact kidney excretes less sodium than the fixed-RSNA kidney is that sodium reabsorption from the intact kidney is more than the other one.
机译:在我们以前的研究中,通过使用具有两个肾脏的心血管模型,验证了在钠限制期间增加肾交感神经活性(RSNA)有助于减少钠排泄的假设[1]。左肾的RSNA固定在其正常稳态值,同时允许右肾的RSNA响应于钠摄入量的减少而正常变化。结果表明,与RSNA固定的肾脏相比,具有完整RSNA的肾脏排泄的钠较少。在这项研究中,使用相同的数学模型分析了长期摄入钠量减少期间RSNA升高对肾脏功能的影响。在以下过程中,血流量,传入和传出的小动脉阻力,肾血管阻力,肾小球静水压,肾小球滤过率,传入小动脉压,肌原性反应,一氧化氮的释放,原位和固定的RSNA肾脏中的过滤钠之间没有差异钠限制。但是,可以看到完整肾脏的近端肾小管钠重吸收和肾素分泌要比固定RSNA肾脏更多。因此,完整的肾脏比固定的RSNA肾脏排泄更少的钠的原因是完整的肾脏对钠的重吸收大于另一个肾脏。

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