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Journal of Cell Science|December 22, 1998
The four populations of myoblasts involved in human limb muscle formation are present from the onset of primary myotube formationF Edom-Vovard, V Mouly, J P Barbet, et al.Developmental Biology|January 1, 1988
Evidence for distinct phosphorylatable myosin light chains in avian heart and slow skeletal muscleP Lohse, B Winter, V Mouly, et al.Experimental Cell Research|August 11, 2004
IGF-1 induces human myotube hypertrophy by increasing cell recruitmentV Jacquemin, D Furling, A Bigot, et al.Scandinavian Journal of Medicine & Science in Sports|January 22, 2003
Satellite cells and training in the elderlyL-E Thornell, M Lindström, V Renault, et al.Annals of Neurology|November 18, 2000
Modulation of acetylcholine receptor expression in seronegative myasthenia gravisS Poea, T Guyon, J Bidault, et al.Developmental Biology|February 1, 1989
Tissue-specific transcriptional control of alpha- and beta-tropomyosins in chicken muscle developmentT Meinnel, D Libri, V Mouly, et al.Neuromuscular Disorders : NMD|October 12, 2001
A discrepancy resolved: human satellite cells are not preprogrammed to fast and slow lineagesS Bonavaud, O Agbulut, R Nizard, et al.Neuromuscular Disorders : NMD|March 27, 2007
Impact on oxidative phosphorylation of immortalization with the telomerase geneK Auré, K Mamchaoui, P Frachon, et al.Developmental Biology|July 1, 1994
Clones of human satellite cells can express in vitro both fast and slow myosin heavy chainsF Edom, V Mouly, J P Barbet, et al.Journal of Molecular and Cellular Cardiology|August 5, 1998
Dynamic left/right regionalisation of endogenous myosin light chain 3F transcripts in the developing mouse heartR G Kelly, P S Zammit, V Mouly, et al.Pageof 5