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Hopf Bifurcation of a Gene-Protein Network Module with Reaction Diffusion and Delay Effects

机译:具有反应扩散和延迟效应的基因蛋白网络模块的Hopf分叉

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The infinite dimensional partial delay differential equation is set forth and delay difference state feedback control is considered to describe the cell cycle growth in eukaryotic cell cycles. Hopf bifurcation occurs as varying free parameters and time delay continuously and the multi-layer oscillation phenomena of the homogeneous steady state of a simple gene-protein network module is investigated. Normal form is derived based on normal formal analysis technique combined with center manifold theory, which is further to compute the bifurcating direction and the stability of bifurcation periodical solutions underlying Hopf bifurcation. Finally, the numerical simulation oscillation phenomena is in coincidence with the theoretical analysis results.
机译:阐述无限尺寸部分延迟微分方程,并且认为延迟差异状态反馈控制用于描述真核细胞周期中的细胞周期生长。 Hopf分叉作为变化的自由参数和连续时间延迟以及均匀稳态的多层振荡现象进行了研究。 基于正常的正式分析技术导出正常形式,该技术与中心歧管理论相结合,这进一步计算了跳跃分叉潜水率下面的分叉周期溶液的分叉方向和稳定性。 最后,数值模拟振荡现象与理论分析结果符合。

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