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Dense transcript profiling in single cells by image correlation decoding.


ABSTRACT: Sequential barcoded fluorescent in situ hybridization (seqFISH) allows large numbers of molecular species to be accurately detected in single cells, but multiplexing is limited by the density of barcoded objects. We present correlation FISH (corrFISH), a method to resolve dense temporal barcodes in sequential hybridization experiments. Using corrFISH, we quantified highly expressed ribosomal protein genes in single cultured cells and mouse thymus sections, revealing cell-type-specific gene expression.

SUBMITTER: Coskun AF 

PROVIDER: S-EPMC4965285 | biostudies-literature | 2016 Aug

REPOSITORIES: biostudies-literature

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Dense transcript profiling in single cells by image correlation decoding.

Coskun Ahmet F AF   Cai Long L  

Nature methods 20160606 8


Sequential barcoded fluorescent in situ hybridization (seqFISH) allows large numbers of molecular species to be accurately detected in single cells, but multiplexing is limited by the density of barcoded objects. We present correlation FISH (corrFISH), a method to resolve dense temporal barcodes in sequential hybridization experiments. Using corrFISH, we quantified highly expressed ribosomal protein genes in single cultured cells and mouse thymus sections, revealing cell-type-specific gene expre  ...[more]

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