Li, J.;                     Li, J.;                     Zhang, L.;                     Xing, T.;                     Jiang, Y.;                     Gao, F.    
        Guanidinoacetic Acid Supplementation Promotes Skeletal Muscle Fiber Type Transformation from Fast-to-Slow-Twitch via Increasing the PPARGC1A Based Mitochondrial Function and CaN/NFAT Pathway in Finishing Pigs. Agriculture 2022, 12, 87.
    https://doi.org/10.3390/agriculture12010087
    AMA Style
    
                                Li J,                                 Li J,                                 Zhang L,                                 Xing T,                                 Jiang Y,                                 Gao F.        
                Guanidinoacetic Acid Supplementation Promotes Skeletal Muscle Fiber Type Transformation from Fast-to-Slow-Twitch via Increasing the PPARGC1A Based Mitochondrial Function and CaN/NFAT Pathway in Finishing Pigs. Agriculture. 2022; 12(1):87.
        https://doi.org/10.3390/agriculture12010087
    
    Chicago/Turabian Style
    
                                Li, Jingzheng,                                 Jiaolong Li,                                 Lin Zhang,                                 Tong Xing,                                 Yun Jiang,                                 and Feng Gao.        
                2022. "Guanidinoacetic Acid Supplementation Promotes Skeletal Muscle Fiber Type Transformation from Fast-to-Slow-Twitch via Increasing the PPARGC1A Based Mitochondrial Function and CaN/NFAT Pathway in Finishing Pigs" Agriculture 12, no. 1: 87.
        https://doi.org/10.3390/agriculture12010087
    
    APA Style
    
                                Li, J.,                                 Li, J.,                                 Zhang, L.,                                 Xing, T.,                                 Jiang, Y.,                                 & Gao, F.        
        
        (2022). Guanidinoacetic Acid Supplementation Promotes Skeletal Muscle Fiber Type Transformation from Fast-to-Slow-Twitch via Increasing the PPARGC1A Based Mitochondrial Function and CaN/NFAT Pathway in Finishing Pigs. Agriculture, 12(1), 87.
        https://doi.org/10.3390/agriculture12010087