textabstractThe identification of geographic population structure and genetic ancestry on the basis of a minimal set of genetic markers is desirable for a wide range of applications in medical and forensic sciences. However, the absence of sharp discontinuities in the neutral genetic diversity among human populations implies that, in practice, a large number of neutral markers will be required to identify the genetic ancestry of one individual. We showed that it is possible to reduce the amount of markers required for detecting continental population structure to only 10 single-nucleotide polymorphisms (SNPs), by applying a newly developed ascertainment algorithm to Affymetrix GeneChip Mapping 10K SNP array data that we obtained from sample...
Abstract Background Accurate determination of genetic ancestry is of high interest for many areas su...
AbstractMany panels of ancestry informative single nucleotide polymorphisms have been proposed in re...
High-throughput sequencing technology enables population-level surveys of human genomic variation. H...
textabstractThe identification of geographic population structure and genetic ancestry on the ...
The identification of geographic population structure and genetic ancestry on the basis of a minimal...
The identification of geographic population structure and genetic ancestry on the basis of a minimal...
The identification of geographic population structure and genetic ancestry on the basis of a minimal...
AbstractSingle-nucleotide polymorphism (SNP) arrays have become a popular technology for disease-ass...
Abstract Background The identification and use of Ancestry-Sensitive Markers (ASMs), i.e. genetic po...
Abstract Background Recent studies have shown that when individuals are grouped on the basis of gene...
Background: While continental level ancestry is relatively simple using genomic information, disting...
Background: While continental level ancestry is relatively simple using genomic information, disting...
Background: While continental level ancestry is relatively simple using genomic information, disting...
AbstractThe century-old use of genetic markers to determine population relationships has morphed in ...
Abstract Background While continental level ancestry is relatively simple using genomic information,...
Abstract Background Accurate determination of genetic ancestry is of high interest for many areas su...
AbstractMany panels of ancestry informative single nucleotide polymorphisms have been proposed in re...
High-throughput sequencing technology enables population-level surveys of human genomic variation. H...
textabstractThe identification of geographic population structure and genetic ancestry on the ...
The identification of geographic population structure and genetic ancestry on the basis of a minimal...
The identification of geographic population structure and genetic ancestry on the basis of a minimal...
The identification of geographic population structure and genetic ancestry on the basis of a minimal...
AbstractSingle-nucleotide polymorphism (SNP) arrays have become a popular technology for disease-ass...
Abstract Background The identification and use of Ancestry-Sensitive Markers (ASMs), i.e. genetic po...
Abstract Background Recent studies have shown that when individuals are grouped on the basis of gene...
Background: While continental level ancestry is relatively simple using genomic information, disting...
Background: While continental level ancestry is relatively simple using genomic information, disting...
Background: While continental level ancestry is relatively simple using genomic information, disting...
AbstractThe century-old use of genetic markers to determine population relationships has morphed in ...
Abstract Background While continental level ancestry is relatively simple using genomic information,...
Abstract Background Accurate determination of genetic ancestry is of high interest for many areas su...
AbstractMany panels of ancestry informative single nucleotide polymorphisms have been proposed in re...
High-throughput sequencing technology enables population-level surveys of human genomic variation. H...