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Mason C McIntosh

Showing results (11-20 of 27) with videos related to

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Aging|April 21, 2024
A novel deep proteomic approach in human skeletal muscle unveils distinct molecular signatures affected by aging and resistance trainingMichael D Roberts, Bradley A Ruple, Joshua S Godwin, et al.
The Journal of Physiology|July 20, 2023
Resistance training diminishes mitochondrial adaptations to subsequent endurance training in healthy untrained menPaulo H C Mesquita, Joshua S Godwin, Bradley A Ruple, et al.
Biorxiv : the Preprint Server for Biology|April 17, 2023
Resistance Training Diminishes Mitochondrial Adaptations to Subsequent Endurance TrainingPaulo H C Mesquita, Joshua S Godwin, Bradley A Ruple, et al.
Biorxiv : the Preprint Server for Biology|June 19, 2023
A novel deep proteomic approach in human skeletal muscle unveils distinct molecular signatures affected by aging and resistance trainingMichael D Roberts, Bradley A Ruple, Joshua S Godwin, et al.
Frontiers in Physiology|December 19, 2025
Resistance training-induced appendicular lean tissue mass changes are largely unrelated to pre-training bone characteristics in a larger cohort of untrained adultsDakota R Tiede, Daniel L Plotkin, Mason C McIntosh, et al.
Cells|March 29, 2023
Different Resistance Exercise Loading Paradigms Similarly Affect Skeletal Muscle Gene Expression Patterns of Myostatin-Related Targets and mTORC1 Signaling MarkersMason C McIntosh, Casey L Sexton, Joshua S Godwin, et al.
Biorxiv : the Preprint Server for Biology|June 3, 2024
Skeletal muscle myosin heavy chain protein fragmentation as a potential marker of protein degradation in response to resistance training and disuse atrophyDaniel L Plotkin, Madison L Mattingly, Derick A Anglin, et al.
Peerj|October 18, 2024
The effects of resistance training to near volitional failure on motor unit recruitment during neuromuscular fatigueJonathan P Beausejour, Kevan S Knowles, Jason I Pagan, et al.
Physiological Reports|May 5, 2023
The effects of resistance training to near failure on strength, hypertrophy, and motor unit adaptations in previously trained adultsBradley A Ruple, Daniel L Plotkin, Morgan A Smith, et al.
Frontiers in Physiology|October 16, 2023
Resistance training in humans and mechanical overload in rodents do not elevate muscle protein lactylationMadison L Mattingly, Bradley A Ruple, Casey L Sexton, et al.
Pageof 3

Showing results (11-20 of 27) with videos related to

Sort By:
Pageof 3
Aging|April 21, 2024
A novel deep proteomic approach in human skeletal muscle unveils distinct molecular signatures affected by aging and resistance trainingMichael D Roberts, Bradley A Ruple, Joshua S Godwin, et al.
The Journal of Physiology|July 20, 2023
Resistance training diminishes mitochondrial adaptations to subsequent endurance training in healthy untrained menPaulo H C Mesquita, Joshua S Godwin, Bradley A Ruple, et al.
Biorxiv : the Preprint Server for Biology|April 17, 2023
Resistance Training Diminishes Mitochondrial Adaptations to Subsequent Endurance TrainingPaulo H C Mesquita, Joshua S Godwin, Bradley A Ruple, et al.
Biorxiv : the Preprint Server for Biology|June 19, 2023
A novel deep proteomic approach in human skeletal muscle unveils distinct molecular signatures affected by aging and resistance trainingMichael D Roberts, Bradley A Ruple, Joshua S Godwin, et al.
Frontiers in Physiology|December 19, 2025
Resistance training-induced appendicular lean tissue mass changes are largely unrelated to pre-training bone characteristics in a larger cohort of untrained adultsDakota R Tiede, Daniel L Plotkin, Mason C McIntosh, et al.
Cells|March 29, 2023
Different Resistance Exercise Loading Paradigms Similarly Affect Skeletal Muscle Gene Expression Patterns of Myostatin-Related Targets and mTORC1 Signaling MarkersMason C McIntosh, Casey L Sexton, Joshua S Godwin, et al.
Biorxiv : the Preprint Server for Biology|June 3, 2024
Skeletal muscle myosin heavy chain protein fragmentation as a potential marker of protein degradation in response to resistance training and disuse atrophyDaniel L Plotkin, Madison L Mattingly, Derick A Anglin, et al.
Peerj|October 18, 2024
The effects of resistance training to near volitional failure on motor unit recruitment during neuromuscular fatigueJonathan P Beausejour, Kevan S Knowles, Jason I Pagan, et al.
Physiological Reports|May 5, 2023
The effects of resistance training to near failure on strength, hypertrophy, and motor unit adaptations in previously trained adultsBradley A Ruple, Daniel L Plotkin, Morgan A Smith, et al.
Frontiers in Physiology|October 16, 2023
Resistance training in humans and mechanical overload in rodents do not elevate muscle protein lactylationMadison L Mattingly, Bradley A Ruple, Casey L Sexton, et al.
Pageof 3