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Saddle-node bifurcation and its robustness analysis: A mechanism for inducing pluripotency in stem cell

机译:鞍节点分叉及其鲁棒性分析:诱导干细胞多能性的机制

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In this paper, we study saddle-node bifurcation and its robustness analysis for a class of nonlinear systems with dynamic uncertainties. First, we formulate a robust bifurcation analysis problem of evaluating the region that contains all potential bifurcation points on which an equilibrium appears, disappears, or loses hyperbolicity depending on uncertainties. Next, we propose an existence condition of multiple equilibria and evaluation of their location. Then, we derive a condition for robust hyperbolicity of a set of potential equilibrium points, and identify the region that contains all potential bifurcation points. The proposed analysis method is applied to robustness analysis of a genetic network model representing a mechanism for generating induced pluripotent stem cells (iPS cells). We find that saddle-node bifurcation occurs in the iPS model. Then, by the proposed robustness analysis, we further show that the bifurcation is so robust that it plays an essential role for inducing pluripotency in actual iPS cells.
机译:在本文中,我们研究了一类具有动态不确定性的非线性系统的鞍节点分叉及其鲁棒性分析。首先,根据不确定性,我们制定了一个鲁棒的分叉分析问题,用于评估包含所有可能出现的分叉点的区域,在该点上出现平衡,消失或失去双曲。接下来,我们提出了多重均衡的存在条件并对其位置进行了评估。然后,我们导出一组潜在的平衡点的鲁棒双曲性的条件,并确定包含所有潜在分叉点的区域。拟议的分析方法应用于表示生成多能干细胞(iPS细胞)的机制的遗传网络模型的鲁棒性分析。我们发现,iPS模型中发生了鞍节点分叉。然后,通过提出的鲁棒性分析,我们进一步证明了分叉是如此鲁棒,以至于它在诱导实际iPS细胞中的多能性中起着至关重要的作用。

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