Zobrazeno 1 - 3
of 3
pro vyhledávání: '"Phillip W. Sheard"'
Autor:
Zoe White, Tea Shavlakadze, Phillip W. Sheard, Christopher D. McMahon, Robert B. White, Miranda D. Grounds, Jessica R. Terrill
Publikováno v:
Skeletal Muscle
Background There is much interest in the capacity of resistance exercise to prevent the age-related loss of skeletal muscle mass and function, known as sarcopenia. This study investigates the molecular basis underlying the benefits of resistance exer
Autor:
Zoe White, Tea Shavlakadze, Phillip W. Sheard, Robert B. White, Jessica R. Terrill, Miranda D. Grounds, Christopher D. McMahon
Publikováno v:
Skeletal Muscle
There is much interest in the capacity of resistance exercise to prevent the age-related loss of skeletal muscle mass and function, known as sarcopenia. This study investigates the molecular basis underlying the benefits of resistance exercise in agi
Autor:
Jeremy D Krebs, Yetrib Hathout, Kristy J. Brown, Murray Leikis, Benjamin Leiken, St. John Wakefield, Will G. Hopkins, William R Sukala, Phillip W. Sheard, Funda E. Orkunoglu-Suer, Bernhard H. Breier, Joseph M. Devaney, Gina M. Many, David S. Rowlands, Rachel Page, Ramya Marathi, Mamta Giri, Birinder S Cheema, Svetlana Ghimbovschi, Eric P. Hoffman, Isabelle Lys, Irum Hayat
Epigenomic regulation of the transcriptome by DNA methylation and posttranscriptional gene silencing by miRNAs are potential environmental modulators of skeletal muscle plasticity to chronic exercise in healthy and diseased populations. We utilized t
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::608967180ce852b76d067a0d4588e52c
https://acuresearchbank.acu.edu.au/item/87wy0/multi-omic-integrated-networks-connect-dna-methylation-and-mirna-with-skeletal-muscle-plasticity-to-chronic-exercise-in-type-2-diabetic-obesity
https://acuresearchbank.acu.edu.au/item/87wy0/multi-omic-integrated-networks-connect-dna-methylation-and-mirna-with-skeletal-muscle-plasticity-to-chronic-exercise-in-type-2-diabetic-obesity