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Low intensity training improves redox status and reduces collagen fibers on dystrophic muscle
Danielle Cristina Fernandes, Jessica Junia A. Cardoso-Nascimento, Bruna Caroline C. Garcia, Karine Beatriz Costa, Etel Rocha-Vieira, Murilo Xavier Oliveira, Alex Sander D. Machado, Ana Paula Santos, Thaís Peixoto Gaiad
J Exerc Rehabil. 2019;15(2):213-223.   Published online 2019 April 26    DOI:

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Low intensity training improves redox status and reduces collagen fibers on dystrophic muscle
Journal of Exercise Rehabilitation. 2019;15(2):213-223   Crossref logo
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Membrane alterations in skeletal muscle fibers of dystrophic mice
Muscle & Nerve. 1983;6(1):3-13   Crossref logo
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Beneficial effects of training on developing dystrophic muscle
Muscle & Nerve. 1992;15(6):672-677   Crossref logo
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Low dose formoterol administration improves muscle function in dystrophic mdx mice without increasing fatigue
Neuromuscular Disorders. 2007;17(1):47-55   Crossref logo
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Effect of chronic electrical stimulation at low frequency on the passive membrane properties of muscle fibers from dystrophic mice
Experimental Neurology. 1983;79(3):630-640   Crossref logo
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Melatonin improves muscle function of the dystrophic mdx5Cv mouse, a model for Duchenne muscular dystrophy
Journal of Pineal Research. 2011;51(2):163-171   Crossref logo

Relationship between limb and trunk muscle hypertrophy following high-intensity resistance training and blood flow-restricted low-intensity resistance training
Clinical Physiology and Functional Imaging. 2011;31(5):347-351   Crossref logo

The role of collagen crosslinking in the increased stiffness of avian dystrophic muscle
Muscle & Nerve. 1989;12(6):486-492   Crossref logo
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Increased resistance of the collagen in avian dystrophic muscle to collagenolytic attack: Evidence for increased crosslinking
Muscle & Nerve. 1989;12(6):476-485   Crossref logo
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Impact of TNF-? Blockade on TGF-?1 and type I collagen mRNA expression in dystrophic muscle
Muscle & Nerve. 2004;30(2):244-246   Crossref logo
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