Current genome-wide association studies (GWAS) use commercial genotyping microarrays that can assay over a million single nucleotide polymorphisms (SNPs). The number of SNPs is further boosted by advanced statistical genotype-imputation algorithms and large SNP databases for reference human populations. The testing of a huge number of SNPs needs to be taken into account in the interpretation of statistical significance in such genome-wide studies, but this is complicated by the non-independence of SNPs because of linkage disequilibrium (LD). Several previous groups have proposed the use of the effective number of independent markers (M e) for the adjustment of multiple testing, but current methods of calculation for M e are limited in accur...
High coverage whole genome sequencing provides near complete information about genetic variation. Ho...
Abstract Background Although high-throughput genotyping arrays have made whole-genome association st...
Genotype imputation is potentially a zero-cost method for bridging gaps in coverage and power betwee...
Abstract Background By assaying hundreds of thousands of single nucleotide polymorphisms, genome wid...
A major challenge in genome-wide association studies (GWASs) is to derive the multiple testing thres...
A major challenge in genome-wide association studies (GWASs) is to derive the multiple testing thres...
Background As we enter an era when testing millions of SNPs in a single gene association study will ...
Background As we enter an era when testing millions of SNPs in a single gene association study will ...
Background As we enter an era when testing millions of SNPs in a single gene association study will ...
Genome-wide association studies commonly involve simultaneous tests of millions of single nucleotide...
A current approach to mapping complex-disease-susceptibility loci in genome-wide association (GWA) s...
Genotype-imputation methods provide an essential technique for high-resolution genome-wide associati...
Statistical imputation of genotype data is an important technique for analysis of genome-wide associ...
The current development of densely spaced collections of single nucleotide polymorphisms (SNPs) will...
Large exploratory studies, including candidate-gene–association testing, genomewide linkage-disequil...
High coverage whole genome sequencing provides near complete information about genetic variation. Ho...
Abstract Background Although high-throughput genotyping arrays have made whole-genome association st...
Genotype imputation is potentially a zero-cost method for bridging gaps in coverage and power betwee...
Abstract Background By assaying hundreds of thousands of single nucleotide polymorphisms, genome wid...
A major challenge in genome-wide association studies (GWASs) is to derive the multiple testing thres...
A major challenge in genome-wide association studies (GWASs) is to derive the multiple testing thres...
Background As we enter an era when testing millions of SNPs in a single gene association study will ...
Background As we enter an era when testing millions of SNPs in a single gene association study will ...
Background As we enter an era when testing millions of SNPs in a single gene association study will ...
Genome-wide association studies commonly involve simultaneous tests of millions of single nucleotide...
A current approach to mapping complex-disease-susceptibility loci in genome-wide association (GWA) s...
Genotype-imputation methods provide an essential technique for high-resolution genome-wide associati...
Statistical imputation of genotype data is an important technique for analysis of genome-wide associ...
The current development of densely spaced collections of single nucleotide polymorphisms (SNPs) will...
Large exploratory studies, including candidate-gene–association testing, genomewide linkage-disequil...
High coverage whole genome sequencing provides near complete information about genetic variation. Ho...
Abstract Background Although high-throughput genotyping arrays have made whole-genome association st...
Genotype imputation is potentially a zero-cost method for bridging gaps in coverage and power betwee...