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Paper Title
Intermittent Hypoxia and Hypercapnia Reproducibly Change the Gut Microbiome and Metabolome across Rodent Model Systems.
PubMed
Paper Journal Title
mSystems
Paper Citation Count
24
Paper Publication Year
2019
Bio Mention
16S rRNA amplicon, ApoE-/-, Hypercapnia, IHH, Ldlr-/-, atherosclerosis, bile acids, cardiovascular disease, fatty acids, human, humans, hypercapnia, mouse
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Author Name
Affiliation
Jin Xue
University of California-San Diego
Orit Poulsen
University of California-San Diego
Antonio Gonzalez
University of California-San Diego
Gregory Humphrey
University of California-San Diego
Gail Ackermann
University of California-San Diego
Dan Zhou
University of California-San Diego
Gabriel G Haddad
University of California-San Diego
Gabriel G Haddad
Rady Children's Hospital-San Diego
Gabriel G Haddad
University of California-San Diego
Gabriel G Haddad
University of California-San Diego
Gabriel G Haddad
University of California-San Diego
Gabriel G Haddad
Rady Children's Hospital-San Diego
Pieter C Dorrestein
University of California-San Diego
Pieter C Dorrestein
Center for Microbiome Innovation, University of California-San Diego
Pieter C Dorrestein
University of California-San Diego
Rob Knight
University of California-San Diego
Rob Knight
Center for Microbiome Innovation, University of California-San Diego
Rob Knight
University of California-San Diego
1 - 18
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