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Diffcyt: Differential discovery in high-dimensional cytometry via high-resolution clustering.


ABSTRACT: High-dimensional flow and mass cytometry allow cell types and states to be characterized in great detail by measuring expression levels of more than 40 targeted protein markers per cell at the single-cell level. However, data analysis can be difficult, due to the large size and dimensionality of datasets as well as limitations of existing computational methods. Here, we present diffcyt, a new computational framework for differential discovery analyses in high-dimensional cytometry data, based on a combination of high-resolution clustering and empirical Bayes moderated tests adapted from transcriptomics. Our approach provides improved statistical performance, including for rare cell populations, along with flexible experimental designs and fast runtimes in an open-source framework.

SUBMITTER: Weber LM 

PROVIDER: S-EPMC6517415 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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diffcyt: Differential discovery in high-dimensional cytometry via high-resolution clustering.

Weber Lukas M LM   Nowicka Malgorzata M   Soneson Charlotte C   Robinson Mark D MD  

Communications biology 20190514


High-dimensional flow and mass cytometry allow cell types and states to be characterized in great detail by measuring expression levels of more than 40 targeted protein markers per cell at the single-cell level. However, data analysis can be difficult, due to the large size and dimensionality of datasets as well as limitations of existing computational methods. Here, we present <i>diffcyt</i>, a new computational framework for differential discovery analyses in high-dimensional cytometry data, b  ...[more]

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