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International Journal of Sports Medicine|June 3, 2017
Endurance Exercise in Hypoxia, Hyperoxia and Normoxia: Mitochondrial and Global AdaptationsAxel Przyklenk, Boris Gutmann, Thorsten Schiffer, et al.
Metabolic Syndrome and Related Disorders|October 27, 2016
Effects of Endurance Training on the Skeletal Muscle Nitric Oxide Metabolism in Insulin-Independent Type 2 Diabetic Men-A Pilot StudyChristian Brinkmann, Benedikt Schulte-Körne, Marijke Grau, et al.
International Journal of Molecular Sciences|May 28, 2022
Repeated and Interrupted Resistance Exercise Induces the Desensitization and Re-Sensitization of mTOR-Related Signaling in Human Skeletal Muscle FibersDaniel Jacko, Kirill Schaaf, Lukas Masur, et al.
Canadian Journal of Physiology and Pharmacology|December 6, 2012
Training-induced alterations of skeletal muscle mitochondrial biogenesis proteins in non-insulin-dependent type 2 diabetic menNana Chung, Thorsten Kreutz, Thorsten Schiffer, et al.
Journal of Strength and Conditioning Research|July 20, 2018
Effects of Endurance Exercise Bouts in Hypoxia, Hyperoxia, and Normoxia on mTOR-Related Protein Signaling in Human Skeletal MuscleAxel Przyklenk, Thorben Aussieker, Boris Gutmann, et al.
Pflugers Archiv : European Journal of Physiology|July 30, 2014
High force development augments skeletal muscle signalling in resistance exercise modes equalized for time under tensionSebastian Gehlert, Frank Suhr, Katrin Gutsche, et al.
Current Biology : CB|August 24, 2024
Force-induced dephosphorylation activates the cochaperone BAG3 to coordinate protein homeostasis and membrane trafficJudith Ottensmeyer, Alessandra Esch, Henrique Baeta, et al.
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