RS-FISH: precise, interactive, fast, and scalable FISH spot detection

Fluorescent in-situ hybridization (FISH)-based methods extract spatially resolved genetic and epigenetic information from biological samples by detecting fluorescent spots in microscopy images, an often challenging task. We present Radial Symmetry-FISH (RS-FISH), an accurate, fast, and user-friendly...

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Veröffentlicht in:Nature methods 2022-12, Vol.19 (12), p.1563-1567
Hauptverfasser: Bahry, Ella, Breimann, Laura, Zouinkhi, Marwan, Epstein, Leo, Kolyvanov, Klim, Mamrak, Nicholas, King, Benjamin, Long, Xi, Harrington, Kyle I. S., Lionnet, Timothée, Preibisch, Stephan
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Sprache:eng
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Zusammenfassung:Fluorescent in-situ hybridization (FISH)-based methods extract spatially resolved genetic and epigenetic information from biological samples by detecting fluorescent spots in microscopy images, an often challenging task. We present Radial Symmetry-FISH (RS-FISH), an accurate, fast, and user-friendly software for spot detection in two- and three-dimensional images. RS-FISH offers interactive parameter tuning and readily scales to large datasets and image volumes of cleared or expanded samples using distributed processing on workstations, clusters, or the cloud. RS-FISH maintains high detection accuracy and low localization error across a wide range of signal-to-noise ratios, a key feature for single-molecule FISH, spatial transcriptomics, or spatial genomics applications. RS-FISH is a user-friendly software for accurate spot detection that is applicable to smFISH experiments, spatial transcriptomics, and spatial genomics. The approach enables fast spot detection in even very large volumetric datasets.
ISSN:1548-7091
1548-7105
1548-7105
DOI:10.1038/s41592-022-01669-y