Background: Expression profiling, the measurement of all transcripts of a cell or tissue type, is currently the most comprehensive method to describe their physiological states. Given that accurate profiling methods currently available require RNA amounts found in thousands to millions of cells, many fields of biology working with specialized cell types cannot use these techniques because available cell numbers are limited. Currently available alternative methods for expression profiling from nanograms of RNA or from very small cell populations lack a broad validation of results to provide accurate information about the measured transcripts. Methods and Findings: We provide evidence that currently available methods for expression profiling ...
Abstract Background Gene expression profiling of small numbers of cells requires high-fidelity ampli...
Biological material is heterogeneous and when exposed to stimuli the various cells present respond d...
<div><h3>Background</h3><p>We have developed a high-throughput amplification method for generating r...
Background: Expression profiling, the measurement of all transcripts of a cell or tissue type, is cu...
BACKGROUND: Expression profiling, the measurement of all transcripts of a cell or tissue type, is cu...
Over the last decade, important insights into the regulation of cellular responses to various stimul...
Over the last decade, important insights into the regulation of cellular responses to various stimul...
Cells are the basic units of life. Studying complex tissues and whole organs requires an understandi...
Summarization: Single-cell transcriptome analysis is a very promising, yet a challenging method, for...
These authors contributed equally to this work. We have developed a quantitative technique for sorti...
We have developed a high-throughput amplification method for generating robust gene expression profi...
Background: Single-cell microarray expression profiling requires 10(8)-10(9)-fold amplification of t...
Since tissues and tumors are heterogenous populations containing different cell types, their transcr...
We have developed a high-throughput amplification method for generating robust gene expression profi...
High-throughput sequencing has greatly influenced the amount of data produced and biological questio...
Abstract Background Gene expression profiling of small numbers of cells requires high-fidelity ampli...
Biological material is heterogeneous and when exposed to stimuli the various cells present respond d...
<div><h3>Background</h3><p>We have developed a high-throughput amplification method for generating r...
Background: Expression profiling, the measurement of all transcripts of a cell or tissue type, is cu...
BACKGROUND: Expression profiling, the measurement of all transcripts of a cell or tissue type, is cu...
Over the last decade, important insights into the regulation of cellular responses to various stimul...
Over the last decade, important insights into the regulation of cellular responses to various stimul...
Cells are the basic units of life. Studying complex tissues and whole organs requires an understandi...
Summarization: Single-cell transcriptome analysis is a very promising, yet a challenging method, for...
These authors contributed equally to this work. We have developed a quantitative technique for sorti...
We have developed a high-throughput amplification method for generating robust gene expression profi...
Background: Single-cell microarray expression profiling requires 10(8)-10(9)-fold amplification of t...
Since tissues and tumors are heterogenous populations containing different cell types, their transcr...
We have developed a high-throughput amplification method for generating robust gene expression profi...
High-throughput sequencing has greatly influenced the amount of data produced and biological questio...
Abstract Background Gene expression profiling of small numbers of cells requires high-fidelity ampli...
Biological material is heterogeneous and when exposed to stimuli the various cells present respond d...
<div><h3>Background</h3><p>We have developed a high-throughput amplification method for generating r...