Verniory A, Du Bois R, Decoodt P, Gassee J P, Lambert P P
J Gen Physiol. 1973 Oct;62(4):489-507. doi: 10.1085/jgp.62.4.489.
The transport equation describing the flow of solute across a membrane has been modified on the basis of theoretical studies calculating the drag of a sphere moving in a viscous liquid undergoing Poiseuille flow inside a cylinder. It is shown that different frictional resistance terms should be introduced to calculate the contributions of diffusion and convection. New sieving equations are derived to calculate r and A(p)/Deltax (respectively, the pore radius and the total area of the pores per unit of path length). These equations provide a better agreement than the older formulas between the calculated and the experimental glomerular sieving coefficients for [(125)I]polyvinylpyrrolidone (PVP) fractions with a mean equivalent radius between 19 and 37 A. From r and A(p)/Deltax, the mean effective glomerular filtration pressure has been calculated, applying Poiseuille's law. A value of 15.4 mm Hg has been derived from the mean sieving curve obtained from 23 experiments performed on normal anesthetized dogs.
描述溶质跨膜流动的输运方程已根据理论研究进行了修正,该理论研究计算了在圆柱体内进行泊肃叶流动的粘性液体中移动的球体的阻力。结果表明,应引入不同的摩擦阻力项来计算扩散和对流的贡献。推导了新的筛分方程来计算r和A(p)/Δx(分别为孔径和单位路径长度的孔隙总面积)。对于平均等效半径在19至37埃之间的[(125)I]聚乙烯吡咯烷酮(PVP)级分,这些方程在计算的和实验的肾小球筛分系数之间比旧公式提供了更好的一致性。根据r和A(p)/Δx,应用泊肃叶定律计算了平均有效肾小球滤过压。从对正常麻醉犬进行的23次实验获得的平均筛分曲线得出的值为15.4毫米汞柱。