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From Bioblast
  • ...oleman CB, Lin CT, Ryan TE, Reidy PT, de Castro Brรกs LE, Karner CM, Burant CF, Maschek JA, Cox JE, Mashek DG, Kardon G, Boudina S, Zeczycki TN, Rutter J, ...oleman CB, Lin CT, Ryan TE, Reidy PT, de Castro Brรกs LE, Karner CM, Burant CF, Maschek JA, Cox JE, Mashek DG, Kardon G, Boudina S, Zeczycki TN, Rutter J,
    2 KB (350 words) - 15:55, 19 December 2019
  • |title=Fleischman JY, Van den Bergh F, Collins NL, Bowers M, Beard DA, Burant CF (2023) Higher mitochondrial oxidative capacity is the primary molecular dif ...Van den Bergh Francoise, Collins Nicole L, Bowers Madelyn, Beard Daniel A, Burant Charles F
    2 KB (359 words) - 12:55, 15 November 2023
  • ...Gao X, Lauinger E, Van den Bergh F, Whitesall SE, Converso-Baran K, Burant CF, Michele DE, Beard DA (2020) Impaired myocardial energetics causes mechanic ...Ellen, Van den Bergh Francoise, Whitesall Steven E, Converso-Baran Kimber, Burant Charles F, Michele Daniel E, Beard Daniel A
    3 KB (407 words) - 20:48, 6 November 2020
  • * Fleischman JY, Van den Bergh F, Collins NL, Bowers M, Beard DA, Burant CF (2023) Higher mitochondrial oxidative capacity is the primary molecular dif
    39 KB (5,472 words) - 10:17, 8 January 2024
  • * Fleischman JY, Van den Bergh F, Collins NL, Bowers M, Beard DA, Burant CF (2023) Higher mitochondrial oxidative capacity is the primary molecular dif
    80 KB (11,165 words) - 09:37, 8 January 2024