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      A comparison of single-cell trajectory inference methods

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      Nature Biotechnology
      Springer Nature

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          Abstract

          <p class="first" id="d11687042e137">Trajectory inference approaches analyze genome-wide omics data from thousands of single cells and computationally infer the order of these cells along developmental trajectories. Although more than 70 trajectory inference tools have already been developed, it is challenging to compare their performance because the input they require and output models they produce vary substantially. Here, we benchmark 45 of these methods on 110 real and 229 synthetic datasets for cellular ordering, topology, scalability and usability. Our results highlight the complementarity of existing tools, and that the choice of method should depend mostly on the dataset dimensions and trajectory topology. Based on these results, we develop a set of guidelines to help users select the best method for their dataset. Our freely available data and evaluation pipeline ( https://benchmark.dynverse.org ) will aid in the development of improved tools designed to analyze increasingly large and complex single-cell datasets. </p>

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          Author and article information

          Journal
          Nature Biotechnology
          Nat Biotechnol
          Springer Nature
          1087-0156
          1546-1696
          April 1 2019
          Article
          10.1038/s41587-019-0071-9
          30936559
          cb01f519-2fc4-4dbc-a541-39e6696eb1b2
          © 2019

          http://www.springer.com/tdm

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