Background: Microarray technology is a high-throughput method for measuring the expression levels of thousand of genes simultaneously. The observed intensities combine a non-specific binding, which is a major disadvantage with microarray data. The Affymetrix GeneChip assigned a mismatch (MM) probe with the intention of measuring nonspecific binding, but various opinions exist regarding usefulness of MM measures. It should be noted that not all observed intensities are associated with expressed genes and many of those are associated with unexpressed genes, of which measured values express mere noise due to non-specific binding, cross-hybridization, or stray signals. The implicit assumption that all genes are expressed leads to poor performan...
Motivation: When comparing gene expression levels between species or strains using microarrays, sequ...
Affymetrix microarrays are currently the most widely used microarray technology. Due to the complexi...
Motivation: Gene expression profiling has become an invaluable tool in functional genomics. A wide v...
Background: Microarray technology is a high-throughput method for measuring the expression levels of...
Background: Hybridization differences caused by target sequence differences can be a confounding fac...
Abstract Background Microarray data analysts commonly...
Background: Affymetrix GeneChips are a popular platform for performing whole-genome experiments on t...
BACKGROUND: Short oligonucleotide arrays for transcript profiling have been available for several ye...
Background: Affymetrix high density oligonucleotide expression arrays are widely used across all fie...
We consider a new frequentist gene expression index for Affymetrix oligonucleotide DNA arrays, using...
Background Current methods of analyzing Affymetrix GeneChip® microarray data require the estimation ...
Gene expression index estimation is an essential step in analyzing multiple probe microarray data. V...
BACKGROUND: Quantifying gene expression by RNA-Seq has several advantages over microarrays, includin...
open4siBackground: High-throughput measurement of transcript intensities using Affymetrix type oligo...
Background Affymetrix GeneChips® are widely used for expression profiling of tens of thousands of g...
Motivation: When comparing gene expression levels between species or strains using microarrays, sequ...
Affymetrix microarrays are currently the most widely used microarray technology. Due to the complexi...
Motivation: Gene expression profiling has become an invaluable tool in functional genomics. A wide v...
Background: Microarray technology is a high-throughput method for measuring the expression levels of...
Background: Hybridization differences caused by target sequence differences can be a confounding fac...
Abstract Background Microarray data analysts commonly...
Background: Affymetrix GeneChips are a popular platform for performing whole-genome experiments on t...
BACKGROUND: Short oligonucleotide arrays for transcript profiling have been available for several ye...
Background: Affymetrix high density oligonucleotide expression arrays are widely used across all fie...
We consider a new frequentist gene expression index for Affymetrix oligonucleotide DNA arrays, using...
Background Current methods of analyzing Affymetrix GeneChip® microarray data require the estimation ...
Gene expression index estimation is an essential step in analyzing multiple probe microarray data. V...
BACKGROUND: Quantifying gene expression by RNA-Seq has several advantages over microarrays, includin...
open4siBackground: High-throughput measurement of transcript intensities using Affymetrix type oligo...
Background Affymetrix GeneChips® are widely used for expression profiling of tens of thousands of g...
Motivation: When comparing gene expression levels between species or strains using microarrays, sequ...
Affymetrix microarrays are currently the most widely used microarray technology. Due to the complexi...
Motivation: Gene expression profiling has become an invaluable tool in functional genomics. A wide v...