质量细胞仪
分叉
一般化
计算机科学
分岔理论
生物
算法
数学
表型
物理
遗传学
数学分析
量子力学
基因
非线性系统
作者
Manu Setty,Michelle D. Tadmor,Shlomit Reich-Zeliger,Omer Angel,Tomer Meir Salame,Pooja Kathail,Kristy Choi,Sean C. Bendall,Nir Friedman,Dana Pe’er
摘要
Cell differentiation is accurately modeled by an algorithm that orders single cells along branched developmental trajectories. Recent single-cell analysis technologies offer an unprecedented opportunity to elucidate developmental pathways. Here we present Wishbone, an algorithm for positioning single cells along bifurcating developmental trajectories with high resolution. Wishbone uses multi-dimensional single-cell data, such as mass cytometry or RNA-Seq data, as input and orders cells according to their developmental progression, and it pinpoints bifurcation points by labeling each cell as pre-bifurcation or as one of two post-bifurcation cell fates. Using 30-channel mass cytometry data, we show that Wishbone accurately recovers the known stages of T-cell development in the mouse thymus, including the bifurcation point. We also apply the algorithm to mouse myeloid differentiation and demonstrate its generalization to additional lineages. A comparison of Wishbone to diffusion maps, SCUBA and Monocle shows that it outperforms these methods both in the accuracy of ordering cells and in the correct identification of branch points.
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