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Applied Physiology, Nutrition, and Metabolism = Physiologie Appliquee, Nutrition Et Metabolisme|December 7, 2007
Skeletal muscle adaptation to fatty acid depends on coordinated actions of the PPARs and PGC1 alpha: implications for metabolic diseaseDeborah M Muoio, Timothy R Koves
Novartis Foundation Symposium|February 14, 2008
Lipid-induced metabolic dysfunction in skeletal muscleDeborah M Muoio, Timothy R Koves
Medicine and Science in Sports and Exercise|April 6, 2005
Glucose uptake in muscle cell cultures from endurance-trained menJason R Berggren, Charles J Tanner, Timothy R Koves, et al.
Biochemical and Biophysical Research Communications|October 4, 2016
Plasma acylcarnitines during insulin stimulation in humans are reflective of age-related metabolic dysfunctionLeslie A Consitt, Timothy R Koves, Deborah M Muoio, et al.
American Journal of Physiology. Cell Physiology|January 14, 2005
Subsarcolemmal and intermyofibrillar mitochondria play distinct roles in regulating skeletal muscle fatty acid metabolismTimothy R Koves, Robert C Noland, Andrew L Bates, et al.
Biomaterials|September 6, 2018
Electrical stimulation increases hypertrophy and metabolic flux in tissue-engineered human skeletal muscleAlastair Khodabukus, Lauran Madden, Neel K Prabhu, et al.
Cell Reports|September 27, 2018
Mitochondrial Diagnostics: A Multiplexed Assay Platform for Comprehensive Assessment of Mitochondrial Energy FluxesKelsey H Fisher-Wellman, Michael T Davidson, Tara M Narowski, et al.
The American Journal of Clinical Nutrition|January 17, 2014
Dietary intake of palmitate and oleate has broad impact on systemic and tissue lipid profiles in humansC Lawrence Kien, Janice Y Bunn, Robert Stevens, et al.
American Journal of Physiology. Endocrinology and Metabolism|April 6, 2002
Evidence of a malonyl-CoA-insensitive carnitine palmitoyltransferase I activity in red skeletal muscleJong-Yeon Kim, Timothy R Koves, Geng-Sheng Yu, et al.
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