Chen Zhaoxia, Li Juan, Zhang Ruqiang, You Xiong
Department of Applied Mathematics, Nanjing Agricultural University, Nanjing 210095, China.
Comput Math Methods Med. 2015;2015:689137. doi: 10.1155/2015/689137. Epub 2015 Oct 13.
Oscillation is one of the most important phenomena in the chemical reaction systems in living cells. The general purpose simulation algorithms fail to take into account this special character and produce unsatisfying results. In order to enhance the accuracy of the integrator, the second-order derivative is incorporated in the scheme. The oscillatory feature of the solution is captured by the integrators with an exponential fitting property. Three practical exponentially fitted TDRK (EFTDRK) methods are derived. To test the effectiveness of the new EFTDRK methods, the two-gene system with cross-regulation and the circadian oscillation of the period protein in Drosophila are simulated. Each EFTDRK method has the best fitting frequency which minimizes the global error. The numerical results show that the new EFTDRK methods are more accurate and more efficient than their prototype TDRK methods or RK methods of the same order and the traditional exponentially fitted RK method in the literature.
振荡是活细胞化学反应系统中最重要的现象之一。通用的模拟算法未能考虑到这一特殊特性,从而产生了不尽人意的结果。为了提高积分器的精度,该方案中纳入了二阶导数。具有指数拟合特性的积分器捕捉到了解的振荡特征。推导了三种实用的指数拟合TDRK(EFTDRK)方法。为了测试新的EFTDRK方法的有效性,对具有交叉调节的双基因系统和果蝇周期蛋白的昼夜振荡进行了模拟。每种EFTDRK方法都有使全局误差最小化的最佳拟合频率。数值结果表明,新的EFTDRK方法比其原型TDRK方法或相同阶数的RK方法以及文献中的传统指数拟合RK方法更准确、更高效。