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Get Free AccessWe have identified 5 novel loci for AF. Our results expand the diversity of genetic pathways implicated in AF and provide novel molecular targets for future biological and pharmacological investigation.
Moritz F. Sinner, Nathan R. Tucker, Kathryn L. Lunetta, Kouichi Ozaki, J. G. Smith, Stella Trompet, Joshua C. Bis, Honghuang Lin, Mina K. Chung, Jonas B. Nielsen, Steven A. Lubitz, Bouwe P. Krijthe, Jared W. Magnani, Jiangchuan Ye, Michael H. Gollob, Tatsuhiko Tsunoda, Martina Müller‐Nurasyid, Peter Lichtner, Annette Peters, Elena Dolmatova, Michiaki Kubo, Jonathan D. Smith, Bruce M. Psaty, Nicholas L. Smith, J. Wouter Jukema, Daniel I. Chasman, Christine M. Albert, Yusuke Ebana, Tetsushi Furukawa, Peter W. Macfarlane, Tamara B. Harris, Dawood Darbar, Marcus Dörr, Anders G. Holst, Jesper Hastrup Svendsen, Albert Hofman, André G. Uitterlinden, Vilmundur Guðnason, Mitsuaki Isobe, Rainer Malik, Martin Dichgans, Jonathan Rosand, David R. Van Wagoner, Emelia Benjamin, David J. Milan, Olle Melander, Susan R. Heckbert, Ian Ford, Yongmei Liu, John Barnard, Morten S. Olesen, Bruno H. Stricker, Toshihiro Tanaka, Stefan Kääb, Patrick T. Ellinor (2014). Integrating Genetic, Transcriptional, and Functional Analyses to Identify 5 Novel Genes for Atrial Fibrillation. , 130(15), DOI: https://doi.org/10.1161/circulationaha.114.009892.
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Type
Article
Year
2014
Authors
55
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1161/circulationaha.114.009892
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