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A three-dimensional semi-analytical solution for predicting drug release through the orifice of a spherical device

机译:一种三维半分析解决方案,用于通过球形装置的孔预测药物释放的三维半分析解决方案

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Three-dimensional solute transport was investigated for a spherical device with a release hole. The governing equation was derived using the Fick's second law. A mixed Neumann-Dirichlet condition was imposed at the boundary to represent diffusion through a small region on the surface of the device. The cumulative percentage of drug released was calculated in the Laplace domain and represented by the first term of an infinite series of Legendre and modified Bessel functions of the first kind. Application of the Zakian algorithm yielded the time-domain closed-form expression. The first-order solution closely matched a numerical solution generated by Mathematica (R). The proposed method allowed computation of the characteristic time. A larger surface pore resulted in a smaller effective time constant. The agreement between the numerical solution and the semi-analytical method improved noticeably as the size of the orifice increased. It took four time constants for the device to release approximately ninety-eight of its drug content. (C) 2016 Elsevier B.V. All rights reserved.
机译:用释放孔对球形装置研究了三维溶质传输。使用Fick的第二法来源的管理方程。在边界处施加混合的Neumann-Dirichlet条件,以表示通过装置表面上的小区域的扩散。释放的药物的累积百分比在拉普拉斯域域计算,并由第一系列的第一项由第一系列的第一个术语表示,并且是第一类的改进的贝塞尔函数。 Zakian算法的应用产生了时域闭合形式表达式。一阶解决方案与Mathematica(R)产生的数值溶液紧密匹配。所提出的方法允许计算特征时间。较大的表面孔导致较小的有效时间常数。数值解和半分析方法之间的协议显着改善,因为孔口的尺寸增加。该装置花了四个时间常数,以释放其约九十八的药物含量。 (c)2016 Elsevier B.v.保留所有权利。

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