US OR Eugene McCurdy CE: Difference between revisions

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{{MiPNetLab
{{O2k-Network Lab}}
|institution=Department of Human Physiology
University of Oregon
|address=CMER, Rm 349
722 E. 11th Ave.
|area code= 97401
|city=Eugene
|state=Oregon (OR)
|country=US
|Contact=McCurdy CE
|MiPNetLab=
|Team=Conner B
|Team previous=
|Status=[http://www.oroboros.at/?Power-O2k '''2 Power-O2k'''] 2014-
|MipNet events=[http://www.oroboros.at/?ioc_2014-05_lajolla IOC89 in La Jolla]
|Info=
}}

Revision as of 09:00, 16 August 2018

                



US OR Eugene McCurdy CE

Oroboros O2k-Network

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O2k-Network Lab
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O2k-Publications

 PublishedReference
Dent 2019 J Appl Physiol (1985)2019Dent JR, Hetrick B, Tahvilian S, Sathe A, Greyslak K, LaBarge SA, Svensson K, McCurdy CE, Schenk S (2019) Skeletal muscle mitochondrial function and exercise capacity is not impaired in mice with knockout of STAT3. J Appl Physiol (1985) 127:1117-27.
Svensson 2019 Am J Physiol Endocrinol Metab2019Svensson K, Tahvilian S, Martins VF, Dent JR, Lemanek A, Barooni N, Greyslak K, McCurdy CE, Schenk S (2019) Combined overexpression of SIRT1 and knockout of GCN5 in adult skeletal muscle does not affect glucose homeostasis or exercise performance in mice. Am J Physiol Endocrinol Metab 318:E145-51.

O2k-Abstracts

 PublishedReference
Greyslak 2018 FASEB J2018Greyslak KT, Hetrick B, Takahashi DL, Dean T, Kievit P, Sullivan EL, McCurdy CE (2018) Exposure to a western-style diet during early development reduces skeletal muscle lipid metabolism and CI-dependent oxidative capacity in juvenile non-human primate offspring. FASEB J.
McCurdy 2018 Endocrine Reviews2018McCurdy CE, True C, Takahashi D, Hetrick B, Varlamov O, Roberts CT (2018) Chronic hyperandrogenemia impairs oxidative metabolism in skeletal muscle from adolescent female rhesus macaques. Endocrine Reviews.
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