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Mark Chaisson

Researcher at University of Southern California

Publications -  67
Citations -  57037

Mark Chaisson is an academic researcher from University of Southern California. The author has contributed to research in topics: Genome & Human genome. The author has an hindex of 31, co-authored 52 publications receiving 38574 citations. Previous affiliations of Mark Chaisson include University of California, San Diego & Cold Spring Harbor Laboratory.

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STAR: ultrafast universal RNA-seq aligner

TL;DR: The Spliced Transcripts Alignment to a Reference (STAR) software based on a previously undescribed RNA-seq alignment algorithm that uses sequential maximum mappable seed search in uncompressed suffix arrays followed by seed clustering and stitching procedure outperforms other aligners by a factor of >50 in mapping speed.
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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

An integrated map of structural variation in 2,504 human genomes

Peter H. Sudmant, +87 more
- 01 Oct 2015 - 
TL;DR: In this paper, the authors describe an integrated set of eight structural variant classes comprising both balanced and unbalanced variants, which are constructed using short-read DNA sequencing data and statistically phased onto haplotype blocks in 26 human populations.
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Mapping single molecule sequencing reads using basic local alignment with successive refinement (BLASR): application and theory

TL;DR: The results indicate that it is possible to map SMS reads with high accuracy and speed, and the inferences made on the mapability of SMS reads using the combinatorial model of sequencing error are in agreement with the mapping accuracy demonstrated on simulated reads.