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== Affiliations ==
1-Oroboros Instruments Corp, Innsbruck, Austria; 2-Swedish School Sports Health Sc, Lindigovagen, Sweden; 3-College Health Human Sc, Colorado State Univ, Fort Collins, CO, USA; 4-Land O’Lakes Purina Feed, St Louis, MO, USA; 5-Comparative Exercise Physiology Lab, Center Veterinary Health Sc, Oklahoma State Univ, Stillwater, OK, USA; 5-D Swarovski Research Lab, Dept Visceral Transplant Thoracic Surgery, Med Univ Innsbruck, Austria. – email@example.com
== Figures ==
[[Image:MiP2015 Laner Figure.JPG|left|500px]] '''Figure 1.''' Coupling/substrate control diagrams. Coupling states: LEAK, ''L''; OXPHOS, ''P''; ET-pathway or electron transfer-pathway capacity, ''E''. Substrate states differ in '''SUIT1''' and '''SUIT2'''. Octanoylcarnitine, Oct 0.2 mM; malate, M 0.5 mM (OctM: FAO); pyruvate; P 5 mM; glutamate, G 10 mM (PGM: CI); succinate, S 10 mM (CI&II); rotenone, Rot 0.5 μM (CII); residual oxygen consumption, ROX with malonate, 5 mM, and antimycin A, 2.5 μM.
== References and acknowledgements ==
Supported by K-Regio project MitoFit.
#Laner V, Boushel RC, Hamilton KL, Miller BF, Williamson KK, Davis MS, Gnaiger E (2014) Cytochrome c flux control factor as a quality criterion in respiratory OXPHOS analysis in canine permeabilized fibers. Mitochondr Physiol Network 19.13:63-4.
#Pesta D, Gnaiger E (2012) High-resolution respirometry. OXPHOS protocols for human cells and permeabilized fibers from small biopsies of human muscle. Methods Mol Biol 810:25-58.
#Gnaiger E (2009) Capacity of oxidative phosphorylation in human skeletal muscle. New perspectives of mitochondrial physiology. Int J Biochem Cell Biol 41:1837-45.
#Votion DM, Gnaiger E, Lemieux H, Mouithys-Mickalad A, Serteyn D (2012) Physical fitness and mitochondrial respiratory capacity in horse skeletal muscle. PLoS One 7:e34890.
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