Budu-Grajdeanu Paula, Moore Leon C, Layton Harold E
Department of Mathematics, Duke University, Durham, NC 27708, USA.
Math Biosci. 2007 Oct;209(2):564-92. doi: 10.1016/j.mbs.2007.03.007. Epub 2007 Mar 27.
We used a simple mathematical model of rat thick ascending limb (TAL) of the loop of Henle to predict the impact of spatially inhomogeneous NaCl permeability, spatially inhomogeneous NaCl active transport, and spatially inhomogeneous tubular radius on luminal NaCl concentration when sustained, sinusoidal perturbations were superimposed on steady-state TAL flow. A mathematical model previously devised by us that used homogeneous TAL transport and fixed TAL radius predicted that such perturbations result in TAL luminal fluid NaCl concentration profiles that are standing waves. That study also predicted that nodes in NaCl concentration occur at the end of the TAL when the tubular fluid transit time equals the period of a periodic perturbation, and that, for non-nodal periods, sinusoidal perturbations generate non-sinusoidal oscillations (and thus a series of harmonics) in NaCl concentration at the TAL end. In the present study we find that the inhomogeneities transform the standing waves and their associated nodes into approximate standing waves and approximate nodes. The impact of inhomogeneous NaCl permeability is small. However, for inhomogeneous active transport or inhomogeneous radius, the oscillations for non-nodal periods tend to be less sinusoidal and more distorted than in the homogeneous case and to thus have stronger harmonics. Both the homogeneous and non-homogeneous cases predict that the TAL, in its transduction of flow oscillations into concentration oscillations, acts as a low-pass filter, but the inhomogeneities result in a less effective filter that has accentuated non-linearities.
我们使用了一个关于亨氏袢大鼠厚升支(TAL)的简单数学模型,来预测当持续的正弦扰动叠加在稳态TAL流上时,空间不均匀的NaCl渗透性、空间不均匀的NaCl主动转运以及空间不均匀的肾小管半径对管腔NaCl浓度的影响。我们之前设计的一个使用均匀TAL转运和固定TAL半径的数学模型预测,这种扰动会导致TAL管腔液NaCl浓度分布形成驻波。该研究还预测,当肾小管液通过时间等于周期性扰动的周期时,NaCl浓度的节点出现在TAL末端;并且,对于非节点周期,正弦扰动会在TAL末端的NaCl浓度中产生非正弦振荡(从而产生一系列谐波)。在本研究中,我们发现这些不均匀性将驻波及其相关节点转变为近似驻波和近似节点。不均匀的NaCl渗透性的影响较小。然而,对于不均匀的主动转运或不均匀的半径,非节点周期的振荡相比于均匀情况往往更不呈正弦形且更扭曲,从而具有更强的谐波。均匀和非均匀情况都预测,TAL在将流量振荡转换为浓度振荡时,起到一个低通滤波器的作用,但不均匀性会导致一个效果较差且非线性更突出的滤波器。