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Daniel J Wilkinson

Showing results (1-10 of 94) with videos related to

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Experimental Physiology|May 4, 2020
Contemporary stable isotope tracer approaches: Insights into skeletal muscle metabolism in health and diseaseMatthew S Brook, Daniel J Wilkinson
Clinical Nutrition Open Science|May 10, 2021
Principles of stable isotope research - with special reference to protein metabolismDaniel J Wilkinson, Matthew S Brook, Ken Smith
International Journal of Molecular Sciences|December 24, 2021
Metabolomics as an Important Tool for Determining the Mechanisms of Human Skeletal Muscle DeconditioningIsabelle Alldritt, Paul L Greenhaff, Daniel J Wilkinson
Clinical Nutrition Open Science|October 24, 2022
Erratum to "Principles of Stable Isotope Research - with Special Reference to Protein Metabolism" [Clinical Nutrition Open Science 36C (2021) 111-125]Daniel J Wilkinson, Matthew S Brook, Ken Smith
Translational Exercise Biomedicine|April 25, 2024
Metabolomic and proteomic applications to exercise biomedicineDaniel J Wilkinson, Hannah Crossland, Philip J Atherton
Progress in Molecular Biology and Translational Science|October 20, 2015
Exercise and Regulation of Protein MetabolismPhilip J Atherton, Bethan E Phillips, Daniel J Wilkinson
Progress in Neurobiology|February 9, 2010
Ammonia metabolism, the brain and fatigue; revisiting the linkDaniel J Wilkinson, Nicholas J Smeeton, Peter W Watt
Current Opinion in Clinical Nutrition and Metabolic Care|August 24, 2017
Nutrient modulation in the management of disease-induced muscle wasting: evidence from human studiesMatthew S Brook, Daniel J Wilkinson, Philip J Atherton
Current Opinion in Clinical Nutrition and Metabolic Care|March 17, 2020
An update on nutrient modulation in the management of disease-induced muscle wasting: evidence from human studiesMatthew S Brook, Daniel J Wilkinson, Philip J Atherton
Biochemical and Biophysical Research Communications|October 22, 2017
A novel puromycin decorporation method to quantify skeletal muscle protein breakdown: A proof-of-concept studyHannah Crossland, Kenneth Smith, Philip J Atherton, et al.
Pageof 10

Showing results (1-10 of 94) with videos related to

Sort By:
Pageof 10
Experimental Physiology|May 4, 2020
Contemporary stable isotope tracer approaches: Insights into skeletal muscle metabolism in health and diseaseMatthew S Brook, Daniel J Wilkinson
Clinical Nutrition Open Science|May 10, 2021
Principles of stable isotope research - with special reference to protein metabolismDaniel J Wilkinson, Matthew S Brook, Ken Smith
International Journal of Molecular Sciences|December 24, 2021
Metabolomics as an Important Tool for Determining the Mechanisms of Human Skeletal Muscle DeconditioningIsabelle Alldritt, Paul L Greenhaff, Daniel J Wilkinson
Clinical Nutrition Open Science|October 24, 2022
Erratum to "Principles of Stable Isotope Research - with Special Reference to Protein Metabolism" [Clinical Nutrition Open Science 36C (2021) 111-125]Daniel J Wilkinson, Matthew S Brook, Ken Smith
Translational Exercise Biomedicine|April 25, 2024
Metabolomic and proteomic applications to exercise biomedicineDaniel J Wilkinson, Hannah Crossland, Philip J Atherton
Progress in Molecular Biology and Translational Science|October 20, 2015
Exercise and Regulation of Protein MetabolismPhilip J Atherton, Bethan E Phillips, Daniel J Wilkinson
Progress in Neurobiology|February 9, 2010
Ammonia metabolism, the brain and fatigue; revisiting the linkDaniel J Wilkinson, Nicholas J Smeeton, Peter W Watt
Current Opinion in Clinical Nutrition and Metabolic Care|August 24, 2017
Nutrient modulation in the management of disease-induced muscle wasting: evidence from human studiesMatthew S Brook, Daniel J Wilkinson, Philip J Atherton
Current Opinion in Clinical Nutrition and Metabolic Care|March 17, 2020
An update on nutrient modulation in the management of disease-induced muscle wasting: evidence from human studiesMatthew S Brook, Daniel J Wilkinson, Philip J Atherton
Biochemical and Biophysical Research Communications|October 22, 2017
A novel puromycin decorporation method to quantify skeletal muscle protein breakdown: A proof-of-concept studyHannah Crossland, Kenneth Smith, Philip J Atherton, et al.
Pageof 10