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  • ...P (2021) Yap regulates skeletal muscle fatty acid oxidation and adiposity in metabolic disease. Nat Commun 12:2887. ...Thomson RE, Hagg A, Davey JR, Qian H, Koopman R, El-Osta A, Greenfield JR, Watt MJ, Febbraio MA, Drew BG, Cox AG, Porrello ER, Harvey KF, Gregorevic P
    2 KB (324 words) - 13:58, 16 August 2021
  • ...r JE (2010) Bioenergetic cost of making an adenosine triphosphate molecule in animal mitochondria. https://doi.org/10.1073/pnas.1011099107 |authors=Watt IN, Montgomery MG, Runswick MJ, Leslie AG, Walker JE
    2 KB (331 words) - 17:18, 12 June 2022
  • ...ergic-induced AMPK signaling, but not the induction of PKA-targeted genes, in adipocytes and adipose tissue. Am J Physiol Cell Physiol 311:C269-76. ...MacPherson RE, Dragos SM, Ramos S, Sutton C, Frendo-Cumbo S, Castellani L, Watt MJ, Perry CG, Mutch DM, Wright DC
    2 KB (334 words) - 14:45, 31 July 2017
  • ...e training attenuates pulmonary inflammation and mitochondrial dysfunction in a mouse model of high-fat high-carbohydrate-induced NAFLD. https://doi.org/ |authors=Cho Jinkyung, Johnson Bruce D, Watt Kymberly D, Niven Alexander S, Yeo Dongwook, Kim Chul-Ho
    3 KB (348 words) - 19:37, 15 November 2022
  • ...ophic skeletal muscle reveals biological roles for dystrophin and utrophin in adaptation and plasticity. Mol Metab 45:101157. ...Chung Jin D, Trieu Jen, Swiderski Kristy, Philp Ashleigh M, Philp Andrew, Watt Matthew J, Stroud David A, Koopman Rene, Steinberg Gregory R, Lynch Gordon
    3 KB (362 words) - 18:12, 20 October 2021
  • ...ergy (Gibbs energy) changes per advancement [J∙MU<sup>-1</sup>], expressed in volt for electric force [V≡J∙C<sup>-1</sup>], dimensionless for thermal |?Was published in year=Year
    2 KB (236 words) - 12:49, 23 May 2020
  • ...mitochondrial DNA variant in MT-ND6: m.14430A&gt;C p.(Trp82Gly) identified in a patient with Leigh syndrome and complex I deficiency. Mol Genet Metab Rep |authors=Meldau Surita, Ackermann Sally, Riordan Gillian, van der Watt George F, Spencer Careni, Raga Sharika, Khan Kashief, Blackhurst Dee M, van
    3 KB (456 words) - 15:39, 9 April 2024
  • ...e=Joergensen CB (2001) August Krogh and Claude Bernard on basic principles in experimental physiology. BioScience 51:59-61. ...ould most efficiently yield an answer” (Randall et al. 1997). Participants in a roundtable on the application of the Krogh principle to plants introduced
    2 KB (274 words) - 11:56, 26 February 2015
  • ...rnal cycles such as the cycle of reincarnation (wheel symbols often appear in Indian temples). ...'motive force''' impressed; and is made in the direction of the right line in which that force is impressed. - 'Alteration of motion' was ambiguous. It m
    7 KB (1,059 words) - 18:26, 16 January 2021
  • ...index.php/MITOEAGLE|COST Action MITOEAGLE]]Age and frailty related changes in PBMCs mitochondrial function and whole body physiology. ...a progressive decline of physical function often with health consequences. In healthy aging the main limiting factors are the progressive loss of muscle
    4 KB (564 words) - 14:35, 5 July 2023
  • ...ergy (Gibbs energy) changes per advancement [J∙MU<sup>-1</sup>], expressed in volt for electric force, Δ<sub>el</sub>''F'' = ∂''G''/∂<sub>el</sub>'' In a chemical reaction r the motive entity is the stoichiometric amount of rea
    6 KB (952 words) - 04:30, 20 March 2023
  • ...support the development of databases of mitochondrial respiratory function in species, tissues, and cells. Clarity of concept and consistency of nomencla ...cells of an organism, contribute to cell respiration, ''J''<sub>rO2</sub>. In addition to mitochondrial catabolic respiration, O<sub>2</sub> is consumed
    38 KB (5,252 words) - 08:27, 8 January 2023
  • |authors=''Author affiliations in hyperlinks:'', Gnaiger Erich, Aasander Frostner Eleonor, Abdul Karim Norwah ...the development of data repositories of mitochondrial respiratory function in species, tissues, and cells. Clarity of concept and consistency of nomencla
    59 KB (8,149 words) - 16:29, 21 January 2024