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首页> 外文期刊>IEEE/ACM transactions on computational biology and bioinformatics >A Branch Point on Differentiation Trajectory is the Bifurcating Event Revealed by Dynamical Network Biomarker Analysis of Single-Cell Data
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A Branch Point on Differentiation Trajectory is the Bifurcating Event Revealed by Dynamical Network Biomarker Analysis of Single-Cell Data

机译:分化轨迹的分支点是通过单细胞数据的动态网络生物标志物分析显示的分支事件

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摘要

The advance in single-cell profiling technologies and the development in computational algorithms provide the opportunity to reconstruct pseudo temporal trajectory with branch point of cellular development. On the other hand, theories such as dynamical network biomarkers (DNB) theory have been recently proposed to characterize the pre-transition state in biological systems. Few studies have validated whether the branch point identified in pseudo time is the critical point in dynamical system. In this study, the dynamical behavior of the branch point on the pseudo trajectory has been investigated. We study the pseudo temporal trajectories reconstructed by Wishbone and diffusion pseudotime analysis (DPT) algorithms, as well as the simulated trajectory. DNB theory is applied to justify the bifurcating event on the pseudo trajectories. Our results demonstrate that the branch point recovered by Wishbone and DPT algorithms is confirmed as a transition state in cell differentiation process by DNB theory. Furthermore, we show that an appropriate DNB group will amplify the comprehensive index of critical event as defined in DNB theory. Our study provides biological insights on pseudo trajectory with branch point in a dynamical view and also indicates that DNB theory may serve as a benchmark to check the validity of branch point.
机译:单小区分析技术的进步和计算算法的开发提供了重建蜂窝发育分支点的伪时间轨迹的机会。另一方面,最近已经提出了诸如动态网络生物标志物(DNB)理论的理论以表征生物系统中的前渡前状态。很少有研究已经验证了在伪时间中识别的分支点是否是动态系统中的临界点。在该研究中,研究了分支点对伪轨迹的动态行为。我们研究了汉语和扩散伪时间分析(DPT)算法重建的伪时间轨迹,以及模拟轨迹。 DNB理论应用于对伪轨迹的分岔事件证明了双射流。我们的结果表明,通过DNB理论确认了汉语和DPT算法中恢复的分支点作为细胞分化过程中的过渡状态。此外,我们表明,适当的DNB组将放大DNB理论中定义的关键事件的综合指数。我们的研究提供了对动态视图中的分支点的伪轨迹的生物学识,并且还表明DNB理论可以作为检查分支点的有效性的基准。

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