We have previously discovered that probes containing runs of four or more contiguous guanines are not reliable for measuring gene expression in the Human HG_U133A Affymetrix GeneChip data. These probes are not correlated with other members of their probe set, but they are correlated with each other. We now extend our analysis to different3′GeneChip designs of mouse, rat, and human. We find that, in all these chip designs, the G-stack probes (probes with a run of exactly four consecutive guanines) are correlated highly with each other, indicating that such probes are not reliable measures of gene expression in mammalian studies. Furthermore, there is no specific position of G-stack where the correlation is highest in all the chips. We also f...
Commercial GeneChips provide highly redundant but noisy data. Rapid identification and subsequent re...
MOTIVATION: When comparing gene expression levels between species or strains using microarrays, sequ...
Microarray technology is a commonly used tool in biomedical research for assessing global gene expre...
Probes with runs of 4 or more guanines (G-stacks) in their sequences can exhibit a level of hybridis...
High Density Oligonucleotide arrays (HDONAs), such as the Affymetrix HG-U133A GeneChip, use sets of ...
The reliable interpretation of Affymetrix GeneChip data is a multi-faceted problem. The interplay be...
Probes with runs of 4 or more guanines (G-stacks) in their sequences can exhibit a level of hybridis...
Motivation: In microarray experiments, probe design is critical to the specific and accurate measure...
Probes with runs of four or more guanines (G-stacks) in their sequences can exhibit a level of hybri...
Motivation: In microarray experiments, probe design is critical to the specific and accurate measure...
BACKGROUND: The brightness of the probe spots on expression microarrays intends to measure the abund...
Background: The Affymetrix GeneChip technology uses multiple probes per gene to measure its expressi...
BACKGROUND: Affymetrix GeneChips utilize 25-mer oligonucleotides probes linked to a silica surface t...
Background: Affymetrix GeneChip technology enables the parallel observations of tens of thousands of...
Commercial GeneChips provide highly redundant but noisy data. Rapid identification and subsequent re...
MOTIVATION: When comparing gene expression levels between species or strains using microarrays, sequ...
Microarray technology is a commonly used tool in biomedical research for assessing global gene expre...
Probes with runs of 4 or more guanines (G-stacks) in their sequences can exhibit a level of hybridis...
High Density Oligonucleotide arrays (HDONAs), such as the Affymetrix HG-U133A GeneChip, use sets of ...
The reliable interpretation of Affymetrix GeneChip data is a multi-faceted problem. The interplay be...
Probes with runs of 4 or more guanines (G-stacks) in their sequences can exhibit a level of hybridis...
Motivation: In microarray experiments, probe design is critical to the specific and accurate measure...
Probes with runs of four or more guanines (G-stacks) in their sequences can exhibit a level of hybri...
Motivation: In microarray experiments, probe design is critical to the specific and accurate measure...
BACKGROUND: The brightness of the probe spots on expression microarrays intends to measure the abund...
Background: The Affymetrix GeneChip technology uses multiple probes per gene to measure its expressi...
BACKGROUND: Affymetrix GeneChips utilize 25-mer oligonucleotides probes linked to a silica surface t...
Background: Affymetrix GeneChip technology enables the parallel observations of tens of thousands of...
Commercial GeneChips provide highly redundant but noisy data. Rapid identification and subsequent re...
MOTIVATION: When comparing gene expression levels between species or strains using microarrays, sequ...
Microarray technology is a commonly used tool in biomedical research for assessing global gene expre...