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Deborah A. Nickerson

Researcher at University of Washington

Publications -  438
Citations -  49266

Deborah A. Nickerson is an academic researcher from University of Washington. The author has contributed to research in topics: Exome sequencing & Exome. The author has an hindex of 88, co-authored 400 publications receiving 38477 citations. Previous affiliations of Deborah A. Nickerson include Seattle Children's Research Institute.

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A global reference for human genetic variation.

Adam Auton, +517 more
- 01 Oct 2015 - 
TL;DR: The 1000 Genomes Project set out to provide a comprehensive description of common human genetic variation by applying whole-genome sequencing to a diverse set of individuals from multiple populations, and has reconstructed the genomes of 2,504 individuals from 26 populations using a combination of low-coverage whole-generation sequencing, deep exome sequencing, and dense microarray genotyping.

A global reference for human genetic variation

Adam Auton, +479 more
TL;DR: The 1000 Genomes Project as mentioned in this paper provided a comprehensive description of common human genetic variation by applying whole-genome sequencing to a diverse set of individuals from multiple populations, and reported the completion of the project, having reconstructed the genomes of 2,504 individuals from 26 populations using a combination of low-coverage whole genome sequencing, deep exome sequencing and dense microarray genotyping.
Journal ArticleDOI

Mapping copy number variation by population-scale genome sequencing

Ryan E. Mills, +374 more
- 03 Feb 2011 - 
TL;DR: A map of unbalanced SVs is constructed based on whole genome DNA sequencing data from 185 human genomes, integrating evidence from complementary SV discovery approaches with extensive experimental validations, and serves as a resource for sequencing-based association studies.
Journal ArticleDOI

Optimal unified approach for rare-variant association testing with application to small-sample case-control whole-exome sequencing studies.

TL;DR: A unified approach for testing the association between rare variants and phenotypes in sequencing association studies is proposed and it is shown that the unified test corresponds to the optimal test in an extended family of SKAT tests, which is referred to as SKAT-O.
Journal ArticleDOI

Sequencing of 53,831 diverse genomes from the NHLBI TOPMed Program.

Daniel Taliun, +205 more
- 10 Feb 2021 - 
TL;DR: The Trans-Omics for Precision Medicine (TOPMed) project as discussed by the authors aims to elucidate the genetic architecture and biology of heart, lung, blood and sleep disorders, with the ultimate goal of improving diagnosis, treatment and prevention of these diseases.