Search research articles
Contact Us
Filters
Showing results (1-10 of 9) with videos related to
Page
of 1
Sort By:
Antioxidants (Basel, Switzerland)
|
August 12, 2018
Mitochondria-Targeted Antioxidants and Skeletal Muscle Function
Sophie C Broome, Jonathan S T Woodhead, Troy L Merry
Redox Biology
|
November 27, 2025
MitoQ supplementation does not impact redox responses to acute exercise in skeletal muscle of older individuals
Sophie C Broome, Jamie Whitfield, Kristel Janssens, et al.
Sports Medicine (Auckland, N.Z.)
|
July 26, 2024
Mitochondria as Nutritional Targets to Maintain Muscle Health and Physical Function During Ageing
Sophie C Broome, Jamie Whitfield, Leonidas G Karagounis, et al.
Nutrients
|
April 30, 2021
Pre-Exercise Carbohydrate or Protein Ingestion Influences Substrate Oxidation but Not Performance or Hunger Compared with Cycling in the Fasted State
Jeffrey A Rothschild, Andrew E Kilding, Sophie C Broome, et al.
Physiological Reports
|
February 22, 2023
A role for β-catenin in diet-induced skeletal muscle insulin resistance
Stewart W C Masson, Waruni C Dissanayake, Sophie C Broome, et al.
European Journal of Applied Physiology
|
May 28, 2020
MitoQ and CoQ10 supplementation mildly suppresses skeletal muscle mitochondrial hydrogen peroxide levels without impacting mitochondrial function in middle-aged men
Toan Pham, Caitlin L MacRae, Sophie C Broome, et al.
The Journal of Physiology
|
June 28, 2021
β-Catenin is required for optimal exercise- and contraction-stimulated skeletal muscle glucose uptake
Stewart W C Masson, Jonathan S T Woodhead, Randall F D'Souza, et al.
Diabetes Research and Clinical Practice
|
March 10, 2025
Combined effects of time-restricted eating and exercise on short-term blood glucose management in individuals with Type 2 Diabetes Mellitus: The TREx study, a randomised controlled trial
Ana Paula Bravo-Garcia, Bridget E Radford, Rebecca C Hall, et al.
Science Advances
|
December 15, 2021
Skeletal muscle NOX4 is required for adaptive responses that prevent insulin resistance
Chrysovalantou E Xirouchaki, Yaoyao Jia, Meagan J McGrath, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 9) with videos related to
Sort By:
Page
of 1
Antioxidants (Basel, Switzerland)
|
August 12, 2018
Mitochondria-Targeted Antioxidants and Skeletal Muscle Function
Sophie C Broome, Jonathan S T Woodhead, Troy L Merry
Redox Biology
|
November 27, 2025
MitoQ supplementation does not impact redox responses to acute exercise in skeletal muscle of older individuals
Sophie C Broome, Jamie Whitfield, Kristel Janssens, et al.
Sports Medicine (Auckland, N.Z.)
|
July 26, 2024
Mitochondria as Nutritional Targets to Maintain Muscle Health and Physical Function During Ageing
Sophie C Broome, Jamie Whitfield, Leonidas G Karagounis, et al.
Nutrients
|
April 30, 2021
Pre-Exercise Carbohydrate or Protein Ingestion Influences Substrate Oxidation but Not Performance or Hunger Compared with Cycling in the Fasted State
Jeffrey A Rothschild, Andrew E Kilding, Sophie C Broome, et al.
Physiological Reports
|
February 22, 2023
A role for β-catenin in diet-induced skeletal muscle insulin resistance
Stewart W C Masson, Waruni C Dissanayake, Sophie C Broome, et al.
European Journal of Applied Physiology
|
May 28, 2020
MitoQ and CoQ10 supplementation mildly suppresses skeletal muscle mitochondrial hydrogen peroxide levels without impacting mitochondrial function in middle-aged men
Toan Pham, Caitlin L MacRae, Sophie C Broome, et al.
The Journal of Physiology
|
June 28, 2021
β-Catenin is required for optimal exercise- and contraction-stimulated skeletal muscle glucose uptake
Stewart W C Masson, Jonathan S T Woodhead, Randall F D'Souza, et al.
Diabetes Research and Clinical Practice
|
March 10, 2025
Combined effects of time-restricted eating and exercise on short-term blood glucose management in individuals with Type 2 Diabetes Mellitus: The TREx study, a randomised controlled trial
Ana Paula Bravo-Garcia, Bridget E Radford, Rebecca C Hall, et al.
Science Advances
|
December 15, 2021
Skeletal muscle NOX4 is required for adaptive responses that prevent insulin resistance
Chrysovalantou E Xirouchaki, Yaoyao Jia, Meagan J McGrath, et al.
Page
of 1