Fletcher J E
Biophys J. 1980 Mar;29(3):437-58. doi: 10.1016/S0006-3495(80)85145-9.
The role of myoglobin in facilitated diffusion of oxygen in muscle in examined in a tissue model that utilizes a central supplying capillary and a tissue cylinder concentric with the central capillary, and that includes the nonlinear characteristics of the oxygen-hemoglobin dissociation reaction. In contrast to previous work, this model exhibits the effect of blood flow and a realistic, though ideal, tissue-capillary geometry. Solutions of the model equations are obtained by a singular-perturbation technique, and numerical results are discussed for model parameters of physiologic interest. In contrast to the findings of Murray, Rubinow, Taylor, and others, fractional order perturbation terms obtained for the "boundary-layer" regions near the supplying capillaries are quite significant in the overall interpretation of the modeling results. Some closed solutions are found for special cases, and these are contrasted with the full singular-perturbation solution. Interpretations are given for parameters of physiologic interest.
在一个组织模型中研究了肌红蛋白在促进肌肉中氧气扩散方面的作用。该模型利用一根中央供应毛细血管和一个与中央毛细血管同心的组织圆柱体,并包含氧合血红蛋白解离反应的非线性特征。与之前的工作不同,此模型展示了血流的影响以及逼真(尽管是理想化)的组织 - 毛细血管几何结构。通过奇异摄动技术获得模型方程的解,并针对具有生理意义的模型参数讨论了数值结果。与默里、鲁比诺夫、泰勒等人的研究结果相反,在供应毛细血管附近的“边界层”区域获得的分数阶摄动项在对建模结果的整体解释中相当重要。针对特殊情况找到了一些封闭解,并将其与完整的奇异摄动解进行对比。对具有生理意义的参数给出了解释。