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Difference between revisions of "Hagve M"

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{{Person
|lastname=Hagve
|firstname=Martin
|firstname=Martin
|lastname=Hagve
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==Particpated at==
* [[]MiPNet14.03 IOC50 | IOC50 Schroecken AT]

Revision as of 08:53, 2 August 2016

Name Hagve Martin,
Institution
Address ,
City
State/Province
Country
Email [email protected]
Weblink
O2k-Network Lab NO Tromsoe Larsen TS


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Publications

 PublishedReference
Hagve 2020 Tidsskr Nor Legeforen2020Hagve M (2020) The money behind academic publishing. Tidsskr Nor Legeforen doi: 10.4045/tidsskr.20.0118.
Hagve 2015 Am J Physiol Endocrinol Metab2015Hagve M, Gjessing PF, Fuskevåg OM, Larsen TS, Irtun Ø (2015) Skeletal muscle mitochondria exhibit decreased pyruvate oxidation capacity and increased ROS emission during surgery-induced acute insulin resistance. Am J Physiol Endocrinol Metab 308:E613-20.
Stenberg 2014 PLoS One2014Stenberg TA, Kildal AB, Sanden E, How OJ, Hagve M, Ytrehus K, Larsen TS, Myrmel T (2014) The acute phase of experimental cardiogenic shock is counteracted by microcirculatory and mitochondrial adaptations. PLoS One 9:e105213.
Johansen 2011 Acta Physiol Scand2011Johansen D, Sanden E, Hagve M, Chu X, Sundset R, Ytrehus K (2011) Heptanol triggers cardioprotection via mitochondrial mechanisms and mitochondrial potassium channel opening in rat hearts. Acta Physiol Scand 201:435-44.
Khalid 2011 Am J Physiol Heart Circ Physiol2011Khalid AM, Hafstad AD, Larsen TS, Severson DL, Boardman N, Hagve M, Berge RK, Aasum E (2011) Cardioprotective effect of the PPAR ligand tetradecylthioacetic acid in type 2 diabetic mice. Am J Physiol Heart Circ Physiol 300:H2116-22.
Hafstad 2011 J Appl Physiol2011Hafstad AD, Boardman NT, Lund J, Hagve M, Khalid AM, Wisløff U, Larsen TS, Aasum E (2011) High intensity interval training alters substrate utilization and reduces oxygen consumption in the heart. J Appl Physiol 111:1235-41.

Abstracts

 PublishedReference
Lund 2012 Abstract IOC682012Lund J, Hafstad AD, Hagve M, Larsen TS, Aasum E (2012) High intensity exercise prevents impairment of respiratory capacity in cardiac mitochondria from obese mice. MiPNet17.08.

Particpated at

  • [[]MiPNet14.03 IOC50 | IOC50 Schroecken AT]