Reduced susceptibility to eccentric exercise-induced muscle damage in resistance-trained men is not linked to resistance training-related neural adaptations
Ye X, Beck T, Wages N. Reduced susceptibility to eccentric exercise-induced muscle damage in resistance-trained men is not linked to resistance training-related neural adaptations. Biology of Sport. 2015;32(3):199-205. doi:10.5604/20831862.1150301.
APA
Ye, X., Beck, T., & Wages, N. (2015). Reduced susceptibility to eccentric exercise-induced muscle damage in resistance-trained men is not linked to resistance training-related neural adaptations. Biology of Sport, 32(3), 199-205. https://doi.org/10.5604/20831862.1150301
Chicago
Ye, X, TW Beck, and NP Wages. 2015. "Reduced susceptibility to eccentric exercise-induced muscle damage in resistance-trained men is not linked to resistance training-related neural adaptations". Biology of Sport 32 (3): 199-205. doi:10.5604/20831862.1150301.
Harvard
Ye, X., Beck, T., and Wages, N. (2015). Reduced susceptibility to eccentric exercise-induced muscle damage in resistance-trained men is not linked to resistance training-related neural adaptations. Biology of Sport, 32(3), pp.199-205. https://doi.org/10.5604/20831862.1150301
MLA
Ye, X et al. "Reduced susceptibility to eccentric exercise-induced muscle damage in resistance-trained men is not linked to resistance training-related neural adaptations." Biology of Sport, vol. 32, no. 3, 2015, pp. 199-205. doi:10.5604/20831862.1150301.
Vancouver
Ye X, Beck T, Wages N. Reduced susceptibility to eccentric exercise-induced muscle damage in resistance-trained men is not linked to resistance training-related neural adaptations. Biology of Sport. 2015;32(3):199-205. doi:10.5604/20831862.1150301.
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