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Effects of antenatal betamethasone on preterm human and mouse ductus arteriosus: comparison with baboon data
Elaine L. Shelton
, Nahid Waleh
, Erin J. Plosa
, John T. Benjamin
, Ginger L. Milne
, Christopher W. Hooper
, Noah J. Ehinger
, Stanley Poole
, Naoko Brown
,
Steven Seidner
,
Donald McCurnin
, Jeff Reese
, Ronald I. Clyman
Department of Pediatrics
Research output
:
Contribution to journal
›
Article
›
peer-review
23
Scopus citations
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Dive into the research topics of 'Effects of antenatal betamethasone on preterm human and mouse ductus arteriosus: comparison with baboon data'. Together they form a unique fingerprint.
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Medicine and Dentistry
Betamethasone
100%
Pregnancy
45%
Infant
36%
Oxygen
27%
Ligation
27%
Prematurity
18%
Prostaglandin
18%
Gene
18%
Stimulus
9%
In Vitro
9%
Nitric Oxide
9%
Gene Expression
9%
Potassium Channel
9%
Vasodilator Agent
9%
Phosphodiesterase
9%
Gestational Age
9%
Patent Ductus Arteriosus
9%
Ductus Arteriosus
9%
Prostaglandin Inhibitor
9%
Age
9%
Absence
9%
Incidence
9%
Childbirth
9%
Pharmacology, Toxicology and Pharmaceutical Science
Betamethasone
100%
Mouse
36%
Baboon
27%
Oxygen
27%
Prostaglandin
18%
Prematurity
18%
Nitric Oxide
9%
Human
9%
Vasodilator Agent
9%
Phosphodiesterase
9%
Potassium Channel
9%
Prostaglandin Inhibitor
9%
Absence
9%
Incidence
9%
Patent Ductus Arteriosus
9%