Single cell transcriptomics is becoming a common technique to unravel new biological phenomena whose functional significance can only be understood in the light of differences in gene expression between single cells. The technology is still in its early days and therefore suffers from many technical challenges. This review discusses the continuous effort to identify and systematically characterise various sources of technical variability in single cell expression data and the need to further develop experimental and computational tools and resources to help deal with it
Traditional gene expression studies have largely ignored cell-to-cell variability in transcription. ...
Background\ud Differentiation of metazoan cells requires execution of different gene expression prog...
Abstract Single-cell analysis is a rapidly evolving approach to characterize genome-scale molecular ...
The advent of single-cell RNA sequencing (scRNA-seq) technologies has enabled gene expression profil...
Gene expression variability has been associated with specific roles in cell function. However, its f...
Single-cell transcriptomics has recently emerged as a powerful technology to explore gene expression...
Cells are the basic unit of life and they have remarkable abilities to respond individually as well ...
Transcriptional noise is an intrinsic feature of cell populations and plays a driving role in mammal...
Cell-to-cell transcriptional variability in otherwise homogeneous cell populations plays an importan...
In this dissertation, we used single-cell RNA sequencing data from five mammalian tissues to charact...
Single-cell transcriptomics has recently emerged as a powerful technology to explore gene expression...
Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan ...
Single cell RNA-Seq is one type of single cell –omics experiment. The technology to perform single c...
High-throughput -omics techniques have revolutionised biology, allowing for thorough and unbiased ch...
Cells are the basic units of life. Studying complex tissues and whole organs requires an understandi...
Traditional gene expression studies have largely ignored cell-to-cell variability in transcription. ...
Background\ud Differentiation of metazoan cells requires execution of different gene expression prog...
Abstract Single-cell analysis is a rapidly evolving approach to characterize genome-scale molecular ...
The advent of single-cell RNA sequencing (scRNA-seq) technologies has enabled gene expression profil...
Gene expression variability has been associated with specific roles in cell function. However, its f...
Single-cell transcriptomics has recently emerged as a powerful technology to explore gene expression...
Cells are the basic unit of life and they have remarkable abilities to respond individually as well ...
Transcriptional noise is an intrinsic feature of cell populations and plays a driving role in mammal...
Cell-to-cell transcriptional variability in otherwise homogeneous cell populations plays an importan...
In this dissertation, we used single-cell RNA sequencing data from five mammalian tissues to charact...
Single-cell transcriptomics has recently emerged as a powerful technology to explore gene expression...
Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan ...
Single cell RNA-Seq is one type of single cell –omics experiment. The technology to perform single c...
High-throughput -omics techniques have revolutionised biology, allowing for thorough and unbiased ch...
Cells are the basic units of life. Studying complex tissues and whole organs requires an understandi...
Traditional gene expression studies have largely ignored cell-to-cell variability in transcription. ...
Background\ud Differentiation of metazoan cells requires execution of different gene expression prog...
Abstract Single-cell analysis is a rapidly evolving approach to characterize genome-scale molecular ...