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Experimental Physiology|August 28, 2022
Ischaemic preconditioning blunts exercise-induced mitochondrial dysfunction, speeds oxygen uptake kinetics but does not alter severe-intensity exercise capacityDonald L Peden, Emma A Mitchell, Stephen J Bailey, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|June 8, 2018
Critical power is positively related to skeletal muscle capillarity and type I muscle fibers in endurance-trained individualsEmma A Mitchell, Neil R W Martin, Stephen J Bailey, et al.Experimental Physiology|January 24, 2021
Blood-flow-restricted exercise: Strategies for enhancing muscle adaptation and performance in the endurance-trained athleteRichard A Ferguson, Emma A Mitchell, Conor W Taylor, et al.The Journal of Physiology|June 3, 2026
Sprint-interval training with post-exercise blood flow restriction increases mitochondrial content and respirationDonald L Peden, Carolin Stangier, Emma A Mitchell, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|October 19, 2018
The combined effect of sprint interval training and postexercise blood flow restriction on critical power, capillary growth, and mitochondrial proteins in trained cyclistsEmma A Mitchell, Neil R W Martin, Mark C Turner, et al.Experimental Physiology|April 9, 2024
Skeletal muscle mitochondrial correlates of critical power and W' in healthy active individualsDonald L Peden, Robert Rogers, Emma A Mitchell, et al.Pageof 1