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Steady-state reaction rate of diffusion-controlled reactions in sheets

机译:板材中的稳态反应速率

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In many biological situations, a species arriving from a remote source diffuses in a domain confined between two parallel surfaces until it finds a binding partner. Since such a geometric shape falls in between two- and three-dimensional settings, the behavior of the macroscopic reaction rate and its dependence on geometric parameters are not yet understood. Modeling the geometric setup by a capped cylinder with a concentric disk-like reactive region on one of the lateral surfaces, we provide an exact semi-analytical solution of the steady-state diffusion equation and compute the diffusive flux onto the reactive region. We explore the dependence of the macroscopic reaction rate on the geometric parameters and derive asymptotic results in several limits. Using the self-consistent approximation, we also obtain a simple fully explicit formula for the reaction rate that exhibits a transition from two- dimensional to three-dimensional behavior as the separation distance between lateral surfaces increases. Biological implications of these results are discussed. Published by AIP Publishing.
机译:在许多生物学情况下,从远程源到遥控器中延伸的物种在两个平行表面之间限制在两个平行表面之间,直到它找到了绑定伙伴。由于这种几何形状在两维设置之间落下,因此尚未理解宏观反应速率的行为及其对几何参数的依赖性。通过在横向表面之一上具有同心盘状反应区域的盖圆筒建模几何设置,我们提供稳态扩散方程的精确半分析解,并将扩散通量计算到反应区域上。我们探讨了宏观反应速率对几何参数的依赖性,并在几个限制中导出渐近结果。使用自洽的近似,我们还获得了一种简单的完全明确公式,其反应速率,其表现出从二维到三维行为的转变,因为横向表面之间的分离距离增加。讨论了这些结果的生物学意义。通过AIP发布发布。

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