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The Journal of Experimental Biology|January 22, 2016
Muscle memory and a new cellular model for muscle atrophy and hypertrophyKristian GundersenBiological Reviews of the Cambridge Philosophical Society|November 3, 2010
Excitation-transcription coupling in skeletal muscle: the molecular pathways of exerciseKristian GundersenThe Journal of Physiology|April 29, 2008
Nuclear domains during muscle atrophy: nuclei lost or paradigm lost?Kristian Gundersen, Jo C BruusgaardThe Journal of Clinical Investigation|March 5, 2008
In vivo time-lapse microscopy reveals no loss of murine myonuclei during weeks of muscle atrophyJo C Bruusgaard, Kristian GundersenJournal of Muscle Research and Cell Motility|February 6, 2010
The ups and downs of gene regulation by electrical activity in skeletal musclesZaheer A Rana, Kristian Gundersen, Andres BuonannoProceedings of the National Academy of Sciences of the United States of America|April 15, 2008
Activity-dependent repression of muscle genes by NFATZaheer A Rana, Kristian Gundersen, Andres BuonannoActa Physiologica (Oxford, England)|January 18, 2026
Mechanisms of Skeletal Muscle Mass Regulation and Muscle MemoryKristian Gundersen, Jo C Bruusgaard, Einar EftestølThe Journal of Physiology|February 25, 2003
Myogenin induces higher oxidative capacity in pre-existing mouse muscle fibres after somatic DNA transferMerete Ekmark, Eirik Grønevik, Peter Schjerling, et al.Development (Cambridge, England)|August 18, 2016
Satellite cell depletion prevents fiber hypertrophy in skeletal muscleIngrid M Egner, Jo C Bruusgaard, Kristian GundersenThe Journal of Physiology|November 6, 2004
Imaging transcription in vivo: distinct regulatory effects of fast and slow activity patterns on promoter elements from vertebrate troponin I isoform genesZaheer A Rana, Kristian Gundersen, Andres Buonanno, et al.Pageof 12