Abstract Background Typically, pooling of mRNA samples in microarray experiments implies mixing mRNA from several biological-replicate samples before hybridization onto a microarray chip. Here we describe an alternative smart pooling strategy in which different samples, not necessarily biological replicates, are pooled in an information theoretic efficient way. Further, each sample is tested on multiple chips, but always in pools made up of different samples. The end goal is to exploit the compressibility of microarray data to reduce the number of chips used and increase the robustness to noise in measurements. Results A theoretical ...
A variety of methods have been developed to demultiplex pooled samples in a single cell RNA sequenci...
Microarrays are revolutionizing genetics by making it possible to genotype hundreds of thousands of ...
Single-cell RNA sequencing (scRNA-seq) has opened new avenues for the characterization of heterogene...
Abstract Background Typically, pooling of mRNA samples in microarray experiments implies mixing mRNA...
Supplementary materials Here we describe at greater length the mathematical basis and practical impl...
BACKGROUND: Microarray technology has become a very important tool for studying gene expression prof...
High-throughput experiments provide a fast, automated way to obtain massive amounts of information a...
Motivation:Microarrays can simultaneously measure the expression levels of many genes and are widely...
Background: In gene expression studies, RNA sample pooling is sometimes considered because of budget...
In a microarray experiment, messenger RNA samples are oftentimes pooled across subjects out of neces...
tissue is a strategy that can be imple-mented in microarray experiments when the amount of sample RN...
Single cell RNA sequencing methods have been increasingly used to understand cellular heterogeneity....
Background Pooled samples are frequently used in experiments measuring gene expression. In this meth...
A variety of methods have been developed to demultiplex pooled samples in a single cell RNA sequenci...
We present a novel and simple method for amplifying RNA targets (named by its acronym, SMART), and f...
A variety of methods have been developed to demultiplex pooled samples in a single cell RNA sequenci...
Microarrays are revolutionizing genetics by making it possible to genotype hundreds of thousands of ...
Single-cell RNA sequencing (scRNA-seq) has opened new avenues for the characterization of heterogene...
Abstract Background Typically, pooling of mRNA samples in microarray experiments implies mixing mRNA...
Supplementary materials Here we describe at greater length the mathematical basis and practical impl...
BACKGROUND: Microarray technology has become a very important tool for studying gene expression prof...
High-throughput experiments provide a fast, automated way to obtain massive amounts of information a...
Motivation:Microarrays can simultaneously measure the expression levels of many genes and are widely...
Background: In gene expression studies, RNA sample pooling is sometimes considered because of budget...
In a microarray experiment, messenger RNA samples are oftentimes pooled across subjects out of neces...
tissue is a strategy that can be imple-mented in microarray experiments when the amount of sample RN...
Single cell RNA sequencing methods have been increasingly used to understand cellular heterogeneity....
Background Pooled samples are frequently used in experiments measuring gene expression. In this meth...
A variety of methods have been developed to demultiplex pooled samples in a single cell RNA sequenci...
We present a novel and simple method for amplifying RNA targets (named by its acronym, SMART), and f...
A variety of methods have been developed to demultiplex pooled samples in a single cell RNA sequenci...
Microarrays are revolutionizing genetics by making it possible to genotype hundreds of thousands of ...
Single-cell RNA sequencing (scRNA-seq) has opened new avenues for the characterization of heterogene...