Larsen 2014 Abstract MiP2014: Difference between revisions
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|organism=Human | |organism=Human | ||
|tissues=Skeletal muscle, Fat | |tissues=Skeletal muscle, Fat | ||
|diseases=Obesity | |diseases=Obesity | ||
|topics=O2 | |topics=O2 | ||
|couplingstates=OXPHOS | |couplingstates=OXPHOS | ||
|substratestates=CI, CII | |substratestates=CI, CII | ||
|additional=MiP2014: HIT | |additional=MiP2014:HIT | ||
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== Affiliation == | == Affiliation == | ||
Xlab, Center Healthy Aging, Dep Biomed Sc, Fac Health Sc, Univ Copenhagen, Denmark. - [email protected] | Xlab, Center Healthy Aging, Dep Biomed Sc, Fac Health Sc, Univ Copenhagen, Denmark. - [email protected] |
Revision as of 11:30, 5 August 2014
The effect of high intensity training on mitochondrial fat oxidation in skeletal muscle and subcutaneous adipose tissue. |
Link:
MiP2014, Book of Abstracts Open Access
Larsen S, Danielsen JD, Soendergard SD, Soegaard D, Vigelsoe A, Dybboe R, Skaaby S, Dela F, Helge JW (2014)
Event: MiP2014
Labels: MiParea: Respiration, mt-Biogenesis;mt-density, Exercise physiology;nutrition;life style Pathology: Obesity
Organism: Human Tissue;cell: Skeletal muscle, Fat
Regulation: O2"O2" is not in the list (Aerobic glycolysis, ADP, ATP, ATP production, AMP, Calcium, Coupling efficiency;uncoupling, Cyt c, Flux control, Inhibitor, ...) of allowed values for the "Respiration and regulation" property.
Coupling state: OXPHOS
MiP2014:HIT
Affiliation
Xlab, Center Healthy Aging, Dep Biomed Sc, Fac Health Sc, Univ Copenhagen, Denmark. - [email protected]