The ability to quantify a large number of varied transcripts in single cells in their native spatial context is crucial to accelerate our understanding of health and disease. Bulk cell RNA analysis masks the heterogeneity in the cell population, while the conventional RNA imaging approaches suffer from low multiplexing capacity. Recent advances in multiplexed fluorescence in situ hybridization (FISH) methods enable comprehensive RNA profiling in individual cells in situ. These technologies will have wide applications in many biological and biomedical fields, including cell type classification, signaling network analysis, tissue architecture, disease diagnosis and patient stratification, etc. In this minireview, we will present the recent te...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...
abstract: Most current approaches for quantification of RNA species in their natural spatial context...
The transcriptome of a cell contains a wealth of information about the cell’s current state and its ...
abstract: Currently, quantification of single cell RNA species in their natural contexts is restrict...
In situ detection of RNAs is becoming increasingly importantfor analysis of gene expression within a...
Advances in single-cell analysis technologies are providing novel insights into phenotypic and funct...
Identifying the genetic basis of cellular function and identity has become a central question in und...
High-throughput gene expression screens provide a quantitative picture of the average expression sig...
Understanding the spatial organization of gene expression with single-nucleotide resolution requires...
We describe a universal sample multiplexing method for single-cell RNA sequencing in which fixed cel...
Systems-level studies of biological systems rely on observations taken at a resolution lower than t...
In our previous paper, Lubeck and Cai, we used super-resolution microscopy to resolve a large number...
Single-cell transcriptomic technologies have emerged as powerful tools to explore cellular heterogen...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...
abstract: Most current approaches for quantification of RNA species in their natural spatial context...
The transcriptome of a cell contains a wealth of information about the cell’s current state and its ...
abstract: Currently, quantification of single cell RNA species in their natural contexts is restrict...
In situ detection of RNAs is becoming increasingly importantfor analysis of gene expression within a...
Advances in single-cell analysis technologies are providing novel insights into phenotypic and funct...
Identifying the genetic basis of cellular function and identity has become a central question in und...
High-throughput gene expression screens provide a quantitative picture of the average expression sig...
Understanding the spatial organization of gene expression with single-nucleotide resolution requires...
We describe a universal sample multiplexing method for single-cell RNA sequencing in which fixed cel...
Systems-level studies of biological systems rely on observations taken at a resolution lower than t...
In our previous paper, Lubeck and Cai, we used super-resolution microscopy to resolve a large number...
Single-cell transcriptomic technologies have emerged as powerful tools to explore cellular heterogen...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...
Technical advances in cell biology have revolutionized the field of cell biology. With new technolog...