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The Journal of Physiology|September 19, 2012
Impaired mitochondrial respiration and decreased fatigue resistance followed by severe muscle weakness in skeletal muscle of mitochondrial DNA mutator miceTakashi Yamada, Niklas Ivarsson, Andrés Hernández, et al.Plos One|March 19, 2026
Myofibrillar protein accumulation but reduced protein synthesis in PDCD4-depleted myotubesStephen Mora, Lilia Alihemmat, Logan D Davari, et al.The Journal of Physiology|May 11, 2019
Intact single muscle fibres from SOD1G93A amyotrophic lateral sclerosis mice display preserved specific force, fatigue resistance and training-like adaptationsArthur J Cheng, Ilary Allodi, Thomas Chaillou, et al.Skeletal Muscle|August 25, 2015
Intracellular Ca(2+)-handling differs markedly between intact human muscle fibers and myotubesKarl Olsson, Arthur J Cheng, Seher Alam, et al.American Journal of Physiology. Cell Physiology|December 20, 2018
Toxic doses of caffeine are needed to increase skeletal muscle contractilityDaria Neyroud, Arthur J Cheng, Chris Donnelly, et al.The Journal of Physiology|October 6, 2017
Post-exercise recovery of contractile function and endurance in humans and mice is accelerated by heating and slowed by cooling skeletal muscleArthur J Cheng, Sarah J Willis, Christoph Zinner, et al.The Journal of Physiology|December 1, 2019
Impaired sarcoplasmic reticulum Ca2+ release is the major cause of fatigue-induced force loss in intact single fibres from human intercostal muscleKarl Olsson, Arthur J Cheng, Mamdoh Al-Ameri, et al.Journal of Cachexia, Sarcopenia and Muscle|July 19, 2022
Sphingomyelinase activity promotes atrophy and attenuates force in human muscle fibres and is elevated in heart failure patientsKarl Olsson, Arthur J Cheng, Mamdoh Al-Ameri, et al.Journal of Cachexia, Sarcopenia and Muscle|February 16, 2022
Exercise reduces intramuscular stress and counteracts muscle weakness in mice with breast cancerTheresa Mader, Thomas Chaillou, Estela Santos Alves, et al.Medicine and Science in Sports and Exercise|April 10, 2024
Carbohydrate Ingestion Increases Interstitial Glucose and Mitigates Neuromuscular Fatigue during Single-Leg Knee ExtensionsMohamed E Elghobashy, Andrew J Richards, Rohin Malekzadeh, et al.Pageof 13