AI Article Synopsis

  • High-dimensional single-cell data has led to the need for dimensionality-reduction tools like t-SNE and UMAP, which enable visualization of complex datasets.
  • Despite their popularity, t-SNE and UMAP have primarily served as visualization tools due to a lack of robust statistical methods for comparison.
  • A new statistical test using the Kolmogorov-Smirnov test allows for the evaluation of differences between dimensionality-reduced datasets, providing a valid way to quantify biological variation and compare multiple samples effectively.

Article Abstract

The advent of high-dimensional single-cell data has necessitated the development of dimensionality-reduction tools. t-Distributed stochastic neighbor embedding (t-SNE) and uniform manifold approximation and projection (UMAP) are the two most frequently used approaches, allowing clear visualization of complex single-cell datasets. Despite the need for quantitative comparison, t-SNE and UMAP have largely remained visualization tools due to the lack of robust statistical approaches. Here, we have derived a statistical test for evaluating the difference between dimensionality-reduced datasets using the Kolmogorov-Smirnov test on the distributions of cross entropy of single cells within each dataset. As the approach uses the inter-relationship of single cells for comparison, the resulting statistic is robust and capable of identifying true biological variation. Further, the test provides a valid distance between single-cell datasets, allowing the organization of multiple samples into a dendrogram for quantitative comparison of complex datasets. These results demonstrate the largely untapped potential of dimensionality-reduction tools for biomedical data analysis beyond visualization.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9939422PMC
http://dx.doi.org/10.1016/j.crmeth.2022.100390DOI Listing

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