Background: Hybridization differences caused by target sequence differences can be a confounding factor in analyzing gene expression on microarrays, lead to false positives and reduce power to detect real expression differences. We prepared an R Bioconductor compatible package to detect, characterize and remove such probes in Affymetrix 3’IVT and exon-based arrays on the basis of correlation of signal intensities from probes within probe sets. Results: Using completely mouse genomes we determined type 1 (false negatives) and type 2 (false positives) errors with high accuracy and we show that our method routinely outperforms previous methods. When detecting 76.2% of known SNP/indels in mouse expression data, we obtain at most 5.5% false posi...
Interlaboratory comparison of microarray data, even when using the same platform, imposes several ch...
Motivation: Affymetrix arrays use multiple probes per gene to measure mRNA abundances. Standard soft...
There is an urgent need for bioinformatic methods that allow integrative analysis of multiple microa...
Background: Hybridization differences caused by target sequence differences can be a confounding fac...
Background: The Affymetrix GeneChip technology uses multiple probes per gene to measure its expressi...
Abstract Background Affymetrix gene expression arrays incorporate paired perfect match (PM) and mism...
Abstract Background Affymetrix GeneChip microarrays are popular platforms for expression profiling i...
International audienceMany recent microarrays hold an enormous number of probe sets, thus raising ma...
MOTIVATION: When comparing gene expression levels between species or strains using microarrays, sequ...
<p><b>Copyright information:</b></p><p>Taken from "AffyMAPSDetector: a software tool to characterize...
Background: Microarray technology is a high-throughput method for measuring the expression levels of...
Background: Gene expression microarrays measure the levels of messenger ribonucleic acid (mRNA) in a...
Motivation: Microarray designs have become increasingly probe-rich, enabling targeting of specific f...
Motivation: In microarray experiments, probe design is critical to the specific and accurate measure...
Motivation: In microarray experiments, probe design is critical to the specific and accurate measure...
Interlaboratory comparison of microarray data, even when using the same platform, imposes several ch...
Motivation: Affymetrix arrays use multiple probes per gene to measure mRNA abundances. Standard soft...
There is an urgent need for bioinformatic methods that allow integrative analysis of multiple microa...
Background: Hybridization differences caused by target sequence differences can be a confounding fac...
Background: The Affymetrix GeneChip technology uses multiple probes per gene to measure its expressi...
Abstract Background Affymetrix gene expression arrays incorporate paired perfect match (PM) and mism...
Abstract Background Affymetrix GeneChip microarrays are popular platforms for expression profiling i...
International audienceMany recent microarrays hold an enormous number of probe sets, thus raising ma...
MOTIVATION: When comparing gene expression levels between species or strains using microarrays, sequ...
<p><b>Copyright information:</b></p><p>Taken from "AffyMAPSDetector: a software tool to characterize...
Background: Microarray technology is a high-throughput method for measuring the expression levels of...
Background: Gene expression microarrays measure the levels of messenger ribonucleic acid (mRNA) in a...
Motivation: Microarray designs have become increasingly probe-rich, enabling targeting of specific f...
Motivation: In microarray experiments, probe design is critical to the specific and accurate measure...
Motivation: In microarray experiments, probe design is critical to the specific and accurate measure...
Interlaboratory comparison of microarray data, even when using the same platform, imposes several ch...
Motivation: Affymetrix arrays use multiple probes per gene to measure mRNA abundances. Standard soft...
There is an urgent need for bioinformatic methods that allow integrative analysis of multiple microa...