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Frontiers in Physiology
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February 26, 2024
Making the case for resistance training in improving vascular function and skeletal muscle capillarization
Mason C McIntosh, Derick A Anglin, Austin T Robinson, et al.
Nutrients
|
June 27, 2025
Lactase-Treated A2 Milk as a Feasible Conventional Milk Alternative: Results of a Randomized Controlled Crossover Trial to Assess Tolerance, Gastrointestinal Distress, and Preference for Milks Varying in Casein Types and Lactose Content
Laura A Robinson, Aidan M Cavanah, Sarah Lennon, et al.
Nutrients
|
June 26, 2026
Effects of Modest Carbohydrate-Energy Supplementation on Resistance Training Adaptations in Trained Men: A Crossover Trial
Menno Henselmans, Dakota R Tiede, Daniel L Plotkin, et al.
International Journal of Molecular Sciences
|
November 27, 2024
Acute and Chronic Resistance Training, Acute Endurance Exercise, nor Physiologically Plausible Lactate In Vitro Affect Skeletal Muscle Lactylation
Madison L Mattingly, Derick A Anglin, Bradley A Ruple, et al.
Experimental Physiology
|
February 12, 2026
Skeletal muscle myosin heavy chain fragmentation following exercise may be linked to post-exercise inflammation and remodelling
Dakota R Tiede, Diego Bittencourt, J Max Michel, et al.
Journal of Applied Physiology (Bethesda, Md. : 1985)
|
June 6, 2025
Disuse and subsequent recovery resistance training affect skeletal muscle angiogenesis-related markers regardless of prior resistance training experience
Mason C McIntosh, J Max Michel, Joshua S Godwin, et al.
Biorxiv : the Preprint Server for Biology
|
December 9, 2024
Leg immobilization and subsequent recovery resistance training affect skeletal muscle angiogenesis related markers in young healthy adults regardless of prior resistance training experience
Mason C McIntosh, J Max Michel, 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 atrophy
Daniel L Plotkin, Madison L Mattingly, Derick A Anglin, et al.
Frontiers in Physiology
|
October 16, 2023
Resistance training in humans and mechanical overload in rodents do not elevate muscle protein lactylation
Madison L Mattingly, Bradley A Ruple, Casey L Sexton, et al.
Experimental Physiology
|
August 24, 2024
Skeletal muscle myosin heavy chain fragmentation as a potential marker of protein degradation in response to resistance training and disuse atrophy
Daniel L Plotkin, Madison L Mattingly, Derick A Anglin, et al.
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Search research articles
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Showing results (1-10 of 12) with videos related to
Sort By:
Page
of 2
Frontiers in Physiology
|
February 26, 2024
Making the case for resistance training in improving vascular function and skeletal muscle capillarization
Mason C McIntosh, Derick A Anglin, Austin T Robinson, et al.
Nutrients
|
June 27, 2025
Lactase-Treated A2 Milk as a Feasible Conventional Milk Alternative: Results of a Randomized Controlled Crossover Trial to Assess Tolerance, Gastrointestinal Distress, and Preference for Milks Varying in Casein Types and Lactose Content
Laura A Robinson, Aidan M Cavanah, Sarah Lennon, et al.
Nutrients
|
June 26, 2026
Effects of Modest Carbohydrate-Energy Supplementation on Resistance Training Adaptations in Trained Men: A Crossover Trial
Menno Henselmans, Dakota R Tiede, Daniel L Plotkin, et al.
International Journal of Molecular Sciences
|
November 27, 2024
Acute and Chronic Resistance Training, Acute Endurance Exercise, nor Physiologically Plausible Lactate In Vitro Affect Skeletal Muscle Lactylation
Madison L Mattingly, Derick A Anglin, Bradley A Ruple, et al.
Experimental Physiology
|
February 12, 2026
Skeletal muscle myosin heavy chain fragmentation following exercise may be linked to post-exercise inflammation and remodelling
Dakota R Tiede, Diego Bittencourt, J Max Michel, et al.
Journal of Applied Physiology (Bethesda, Md. : 1985)
|
June 6, 2025
Disuse and subsequent recovery resistance training affect skeletal muscle angiogenesis-related markers regardless of prior resistance training experience
Mason C McIntosh, J Max Michel, Joshua S Godwin, et al.
Biorxiv : the Preprint Server for Biology
|
December 9, 2024
Leg immobilization and subsequent recovery resistance training affect skeletal muscle angiogenesis related markers in young healthy adults regardless of prior resistance training experience
Mason C McIntosh, J Max Michel, 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 atrophy
Daniel L Plotkin, Madison L Mattingly, Derick A Anglin, et al.
Frontiers in Physiology
|
October 16, 2023
Resistance training in humans and mechanical overload in rodents do not elevate muscle protein lactylation
Madison L Mattingly, Bradley A Ruple, Casey L Sexton, et al.
Experimental Physiology
|
August 24, 2024
Skeletal muscle myosin heavy chain fragmentation as a potential marker of protein degradation in response to resistance training and disuse atrophy
Daniel L Plotkin, Madison L Mattingly, Derick A Anglin, et al.
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of 2