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Computational analysis of microbial flow cytometry data
Rubbens, P.; Props, R. (2021). Computational analysis of microbial flow cytometry data. mSystems 6(1): e00895-20. https://dx.doi.org/10.1128/msystems.00895-20
In: mSystems. American Society for Microbiology: Washington, DC. e-ISSN 2379-5077
Peer reviewed article  

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  • Rubbens, P.
  • Props, R.

Abstract
    Flow cytometry is an important technology for the study of microbial communities. It grants the ability to rapidly generate phenotypic single-cell data that are both quantitative, multivariate and of high temporal resolution. The complexity and amount of data necessitate an objective and streamlined data processing workflow that extends beyond commercial instrument software. No full overview of the necessary steps regarding the computational analysis of microbial flow cytometry data currently exists. In this review, we provide an overview of the full data analysis pipeline, ranging from measurement to data interpretation, tailored toward studies in microbial ecology. At every step, we highlight computational methods that are potentially useful, for which we provide a short nontechnical description. We place this overview in the context of a number of open challenges to the field and offer further motivation for the use of standardized flow cytometry in microbial ecology research.

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Westbanks is a project Supported by the Belgian Science Policy (BELSPO): SSD Science for sustainable Development
General coordination: Magda Vincx & Jan Vanaverbeke
Hosted by the Flanders Marine Institute VLIZ