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Journal of Cell Science|August 13, 1999
In vivo satellite cell activation via Myf5 and MyoD in regenerating mouse skeletal muscleR N Cooper, S Tajbakhsh, V Mouly, et al.Experimental Cell Research|June 15, 1996
SV40 large T antigen interferes with adult myosin heavy chain expression, but not with differentiation of human satellite cellsV Mouly, F Edom, S Decary, et al.The American Journal of Tropical Medicine and Hygiene|May 1, 1983
Comparison of the enzyme-linked immunosorbent assay (ELISA) with standard tests used to detect yellow fever virus antibodiesV Deubel, V Mouly, J J Salaun, et al.Human Gene Therapy|August 10, 1997
Replicative potential and telomere length in human skeletal muscle: implications for satellite cell-mediated gene therapyS Decary, V Mouly, C B Hamida, et al.Neuromuscular Disorders : NMD|March 14, 2000
Shorter telomeres in dystrophic muscle consistent with extensive regeneration in young childrenS Decary, C B Hamida, V Mouly, et al.Human Gene Therapy|December 22, 2004
Human muscle precursor cell regeneration in the mouse host is enhanced by growth factorsK Brimah, J Ehrhardt, V Mouly, et al.Human Gene Therapy|August 12, 2003
Extended amplification in vitro and replicative senescence: key factors implicated in the success of human myoblast transplantationR N Cooper, D Thiesson, D Furling, et al.Annales De Pathologie|January 1, 1989
[Rhabdomyosarcomas discovered in newborn infants. Study of markers of muscle differentiation]J P Barbet, J Y Kurzenne, G S Butler-Browne, et al.Transplantation Proceedings|April 1, 2008
Heat shock treatment increases engraftment of transplanted human myoblasts into immunodeficient miceI Riederer, E Negroni, A Bigot, et al.Neuropathology and Applied Neurobiology|February 12, 2009
Satellite cell dysfunction contributes to the progressive muscle atrophy in myotonic dystrophy type 1L-E Thornell, M Lindstöm, V Renault, et al.Pageof 5