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Electrophoresis|May 17, 2012
Optimization of large gel 2D electrophoresis for proteomic studies of skeletal musclePatrick W Reed, Allison Densmore, Robert J BlochMuscle & Nerve|September 25, 2004
The sarcolemma in the Large(myd) mousePatrick W Reed, Katherine D Mathews, Kathleen A Mills, et al.Experimental Neurology|April 25, 2007
Abnormal expression of mu-crystallin in facioscapulohumeral muscular dystrophyPatrick W Reed, Andrea M Corse, Neil C Porter, et al.American Journal of Physiology. Cell Physiology|November 20, 2009
Extensive mononuclear infiltration and myogenesis characterize recovery of dysferlin-null skeletal muscle from contraction-induced injuriesJoseph A Roche, Richard M Lovering, Renuka Roche, et al.American Journal of Physiology. Cell Physiology|August 12, 2011
Physiological and histological changes in skeletal muscle following in vivo gene transfer by electroporationJoseph A Roche, Diana L Ford-Speelman, Lisa W Ru, et al.Journal of Cell Science|November 1, 2007
Absence of keratin 19 in mice causes skeletal myopathy with mitochondrial and sarcolemmal reorganizationMichele R Stone, Andrea O'Neill, Richard M Lovering, et al.Neuromuscular Disorders : NMD|July 30, 2005
Postnatal changes in sarcolemmal organization in the mdx mousePatrick Reed, Robert J BlochThe Journal of Biological Chemistry|November 22, 2002
The hydrophilic domain of small ankyrin-1 interacts with the two N-terminal immunoglobulin domains of titinAikaterini Kontrogianni-Konstantopoulos, Robert J BlochJournal of Muscle Research and Cell Motility|August 9, 2019
Skeletal muscle cell transplantation: models and methodsAmber L Mueller, Robert J BlochJournal of Muscle Research and Cell Motility|April 21, 2006
Obscurin: a multitasking muscle giantAikaterini Kontrogianni-Konstantopoulos, Robert J BlochPageof 9