AI Article Synopsis

  • The rise of single-cell RNA sequencing enables the analysis of cell state transitions through pseudotemporal trajectories, but challenges like data sparsity and technical variability require careful feature selection for effective analysis.
  • We developed a new feature selection method called the neighborhood variance ratio (NVR) and found it performs better than existing algorithms, revealing notable differences in the features they select.
  • The NVR package (pyNVR) is available for free on GitHub, and additional supplementary data can be found online.

Article Abstract

Motivation: The emergence of single-cell RNA-sequencing has enabled analyses that leverage transitioning cell states to reconstruct pseudotemporal trajectories. Multidimensional data sparsity, zero inflation and technical variation necessitate the selection of high-quality features that feed downstream analyses. Despite the development of numerous algorithms for the unsupervised selection of biologically relevant features, their differential performance remains largely unaddressed.

Results: We implemented the neighborhood variance ratio (NVR) feature selection approach as a Python package with substantial improvements in performance. In comparing NVR with multiple unsupervised algorithms such as dpFeature, we observed striking differences in features selected. We present evidence that quantifiable dataset properties have observable and predictable effects on the performance of these algorithms.

Availability And Implementation: pyNVR is freely available at https://github.com/KenLauLab/NVR.

Supplementary Information: Supplementary data are available at Bioinformatics online.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6596893PMC
http://dx.doi.org/10.1093/bioinformatics/bty950DOI Listing

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