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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Signal transduction in a compliant short loop of Henle
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Signal transduction in a compliant short loop of Henle

机译:符合Henle标准的短循环中的信号转导

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To study the transformation of fluctuations in filtration rate into tubular fluid chloride concentration oscillations alongside the macula densa, we have developed a mathematical model for tubuloglomerular feedback (TGF) signal transduction along the pars recta, the descending limb, and the thick ascending limb (TAL) of a short-looped nephron. The model tubules are assumed to have compliant walls and, thus, a tubular radius that depends on the transmural pressure difference. Previously, it has been predicted that TGF transduction by the TAL is a generator of nonlinearities: if a sinusoidal oscillation is added to a constant TAL flow rate, then the time required for a fluid element to traverse the TAL is oscillatory in time but nonsinusoidal. The results from the new model simulations presented here predict that TGF transduction by the loop of Henle is also, in the same sense, a generator of nonlinearities. Thus, this model predicts that oscillations in tubular fluid alongside the macula densa will be nonsinusoidal and will exhibit harmonics of sinusoidal perturbations of pars recta flow. Model results also indicate that the loop acts as a low-pass filter in the transduction of the TGF signal.
机译:为了研究滤过率的波动转化为与黄斑部牙本质一样的管状液体氯化物浓度振荡的过程,我们开发了一种数学模型,用于沿着直肠,下肢和厚上肢(TAL)的肾小管肾小球反馈(TGF)信号转导。 )的短环肾单位。假定模型小管具有顺应性的壁,并因此具有取决于透壁压差的管状半径。以前,人们曾预测过TAL的TGF转换是非线性的产生因素:如果将正弦振荡添加到恒定的TAL流量,则流体元件穿越TAL所需的时间在时间​​上是振荡的,但不是正弦的。此处介绍的新模型仿真的结果预测,从相同的意义上讲,Henle回路对TGF的转导也是非线性的产生器。因此,该模型预测在黄斑部牙旁的管状液体中的振荡将是非正弦的,并且将显示pars直肠流的正弦扰动的谐波。模型结果还表明,该环路在TGF信号的传导中起着低通滤波器的作用。

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