Arino Julien, Gouzé Jean-Luc, Sciandra Antoine
INRIA Sophia Antipolis, BP 93, 06902 Sophia Antipolis Cedex, France.
J Math Biol. 2002 Oct;45(4):313-36. doi: 10.1007/s002850200160.
We introduce inhomogeneous, substrate dependent cell division in a time discrete, nonlinear matrix model of size-structured population growth in the chemostat, first introduced by Gage et al. [8] and later analysed by Smith [13]. We show that mass conservation is verified, and conclude that our system admits one non zero globally stable equilibrium, which we express explicitly. Then we run numerical simulations of the system, and compare the predictions of the model to data related to phytoplankton growth, whose obtention we discuss. We end with the identification of several parameters of the system.
我们在恒化器中大小结构种群增长的时间离散、非线性矩阵模型中引入了非均匀、依赖底物的细胞分裂,该模型最初由盖奇等人[8]提出,后来由史密斯[13]进行分析。我们证明了质量守恒得到验证,并得出我们的系统存在一个非零的全局稳定平衡点的结论,我们明确地给出了该平衡点。然后我们对系统进行数值模拟,并将模型的预测与浮游植物生长相关的数据进行比较,我们还讨论了这些数据的获取。最后我们确定了系统的几个参数。