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Coordinated changes in gene expression kinetics underlie both mouse and human erythroid maturation
Abstract: Background: Single-cell technologies are transforming biomedical research, including the recent demonstration that unspliced pre-mRNA present in single-cell RNA-Seq permits prediction of future expression states. Here...
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Coordinated changes in gene expression kinetics underlie both mouse and human erythroid maturation
Abstract: Background: Single-cell technologies are transforming biomedical research, including the recent demonstration that unspliced pre-mRNA present in single-cell RNA-Seq permits prediction of future expression states. Here...
Published by:
Coordinated changes in gene expression kinetics underlie both mouse and human erythroid maturation.

Background

Single-cell technologies are transforming biomedical research, including the recent demonstration that unspliced pre-mRNA present in single-cell RNA-Seq permits prediction of future expression states. Here we...
Published by: Genome biology