Author Correction: Frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio-based de novo mutation analyses

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Main Authors: Jonatan Axelsson, Danielle LeBlanc, Habiballah Shojaeisaadi, Matthew J. Meier, Devon M. Fitzgerald, Daniela Nachmanson, Jedidiah Carlson, Alexandra Golubeva, Jake Higgins, Thomas Smith, Fang Yin Lo, Richard Pilsner, Andrew Williams, Jesse Salk, Francesco Marchetti, Carole Yauk
Format: Article
Language:English
Published: Nature Portfolio 2024-12-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-024-82618-x
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author Jonatan Axelsson
Danielle LeBlanc
Habiballah Shojaeisaadi
Matthew J. Meier
Devon M. Fitzgerald
Daniela Nachmanson
Jedidiah Carlson
Alexandra Golubeva
Jake Higgins
Thomas Smith
Fang Yin Lo
Richard Pilsner
Andrew Williams
Jesse Salk
Francesco Marchetti
Carole Yauk
author_facet Jonatan Axelsson
Danielle LeBlanc
Habiballah Shojaeisaadi
Matthew J. Meier
Devon M. Fitzgerald
Daniela Nachmanson
Jedidiah Carlson
Alexandra Golubeva
Jake Higgins
Thomas Smith
Fang Yin Lo
Richard Pilsner
Andrew Williams
Jesse Salk
Francesco Marchetti
Carole Yauk
author_sort Jonatan Axelsson
collection DOAJ
format Article
id doaj-art-ee837449b7c84d229f8fa29883d90ec4
institution OA Journals
issn 2045-2322
language English
publishDate 2024-12-01
publisher Nature Portfolio
record_format Article
series Scientific Reports
spelling doaj-art-ee837449b7c84d229f8fa29883d90ec42025-08-20T01:59:43ZengNature PortfolioScientific Reports2045-23222024-12-011411110.1038/s41598-024-82618-xAuthor Correction: Frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio-based de novo mutation analysesJonatan Axelsson0Danielle LeBlanc1Habiballah Shojaeisaadi2Matthew J. Meier3Devon M. Fitzgerald4Daniela Nachmanson5Jedidiah Carlson6Alexandra Golubeva7Jake Higgins8Thomas Smith9Fang Yin Lo10Richard Pilsner11Andrew Williams12Jesse Salk13Francesco Marchetti14Carole Yauk15Department of Biology, University of OttawaEnvironmental Health Science and Research Bureau, Health CanadaEnvironmental Health Science and Research Bureau, Health CanadaEnvironmental Health Science and Research Bureau, Health CanadaTwinStrand Biosciences, Inc.TwinStrand Biosciences, Inc.TwinStrand Biosciences, Inc.TwinStrand Biosciences, Inc.TwinStrand Biosciences, Inc.TwinStrand Biosciences, Inc.TwinStrand Biosciences, Inc.Department of Obstetrics & Gynecology, Wayne State UniversityEnvironmental Health Science and Research Bureau, Health CanadaTwinStrand Biosciences, Inc.Environmental Health Science and Research Bureau, Health CanadaDepartment of Biology, University of Ottawahttps://doi.org/10.1038/s41598-024-82618-x
spellingShingle Jonatan Axelsson
Danielle LeBlanc
Habiballah Shojaeisaadi
Matthew J. Meier
Devon M. Fitzgerald
Daniela Nachmanson
Jedidiah Carlson
Alexandra Golubeva
Jake Higgins
Thomas Smith
Fang Yin Lo
Richard Pilsner
Andrew Williams
Jesse Salk
Francesco Marchetti
Carole Yauk
Author Correction: Frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio-based de novo mutation analyses
Scientific Reports
title Author Correction: Frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio-based de novo mutation analyses
title_full Author Correction: Frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio-based de novo mutation analyses
title_fullStr Author Correction: Frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio-based de novo mutation analyses
title_full_unstemmed Author Correction: Frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio-based de novo mutation analyses
title_short Author Correction: Frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio-based de novo mutation analyses
title_sort author correction frequency and spectrum of mutations in human sperm measured using duplex sequencing correlate with trio based de novo mutation analyses
url https://doi.org/10.1038/s41598-024-82618-x
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