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Paper Details

Intermittent Hypoxia and Hypercapnia Reproducibly Change the Gut Microbiome and Metabolome across Rodent Model Systems.
mSystems
24
2019
16S rRNA amplicon, ApoE-/-, Hypercapnia, IHH, Ldlr-/-, atherosclerosis, bile acids, cardiovascular disease, fatty acids, human, humans, hypercapnia, mouse
Author NameAffiliation
Jin XueUniversity of California-San Diego
Orit PoulsenUniversity of California-San Diego
Antonio GonzalezUniversity of California-San Diego
Gregory HumphreyUniversity of California-San Diego
Gail AckermannUniversity of California-San Diego
Dan ZhouUniversity of California-San Diego
Gabriel G HaddadUniversity of California-San Diego
Gabriel G HaddadRady Children's Hospital-San Diego
Gabriel G HaddadUniversity of California-San Diego
Gabriel G HaddadUniversity of California-San Diego
Gabriel G HaddadUniversity of California-San Diego
Gabriel G HaddadRady Children's Hospital-San Diego
Pieter C DorresteinUniversity of California-San Diego
Pieter C DorresteinCenter for Microbiome Innovation, University of California-San Diego
Pieter C DorresteinUniversity of California-San Diego
Rob KnightUniversity of California-San Diego
Rob KnightCenter for Microbiome Innovation, University of California-San Diego
Rob KnightUniversity of California-San Diego
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