Abstract Background Pooling genomic DNA samples within clinical classes of disease followed by genotyping on whole-genome SNP microarrays, allows for rapid and inexpensive genome-wide association studies. Key to the success of these studies is the accuracy of the allelic frequency calculations, the ability to identify false-positives arising from assay variability and the ability to better resolve association signals through analysis of neighbouring SNPs. Results We report the accuracy of allelic frequency measurements on pooled genomic DNA samples by comparing these measurements to the known allelic frequencies as determined by individual genotyping. We describe modifications to the calculation of k-correction factors from relative allele ...
Allelic association studies provide the most powerful method for locating genes of small effect cont...
BACKGROUND: Genotyping technology has advanced such that genome-wide association studies of complex ...
BACKGROUND: Genotyping technology has advanced such that genome-wide association studies of complex ...
Pooling genomic DNA samples within clinical classes of disease for use in whole-genome single nucleo...
Large samples and systematic screens of thousands of DNA markers are needed to detect quantitative t...
The identification of quantitative trait loci (QTLs) of small effect size that underlie complex trai...
The identification of quantitative trait loci (QTLs) of small effect size that underlie complex trai...
Large samples and systematic screens of thousands of DNA markers are needed to detect quantitative t...
Abstract Background Genotyping technology has advanced such that genome-wide association studies of ...
Several groups have developed methods for estimating allele frequencies in DNA pools as a fast and c...
Several groups have developed methods for estimating allele frequencies in DNA pools as a fast and c...
Several groups have developed methods for estimating allele frequencies in DNA pools as a fast and c...
Several groups have developed methods for estimating allele frequencies in DNA pools as a fast and c...
Background: Genome-wide association studies (GWAS) using array-based genotyping technology are widel...
SummaryAllelic association studies provide the most powerful method for locating genes of small effe...
Allelic association studies provide the most powerful method for locating genes of small effect cont...
BACKGROUND: Genotyping technology has advanced such that genome-wide association studies of complex ...
BACKGROUND: Genotyping technology has advanced such that genome-wide association studies of complex ...
Pooling genomic DNA samples within clinical classes of disease for use in whole-genome single nucleo...
Large samples and systematic screens of thousands of DNA markers are needed to detect quantitative t...
The identification of quantitative trait loci (QTLs) of small effect size that underlie complex trai...
The identification of quantitative trait loci (QTLs) of small effect size that underlie complex trai...
Large samples and systematic screens of thousands of DNA markers are needed to detect quantitative t...
Abstract Background Genotyping technology has advanced such that genome-wide association studies of ...
Several groups have developed methods for estimating allele frequencies in DNA pools as a fast and c...
Several groups have developed methods for estimating allele frequencies in DNA pools as a fast and c...
Several groups have developed methods for estimating allele frequencies in DNA pools as a fast and c...
Several groups have developed methods for estimating allele frequencies in DNA pools as a fast and c...
Background: Genome-wide association studies (GWAS) using array-based genotyping technology are widel...
SummaryAllelic association studies provide the most powerful method for locating genes of small effe...
Allelic association studies provide the most powerful method for locating genes of small effect cont...
BACKGROUND: Genotyping technology has advanced such that genome-wide association studies of complex ...
BACKGROUND: Genotyping technology has advanced such that genome-wide association studies of complex ...