Fritzen, A.M.; Thøgersen, F.B.; Thybo, K.; Vissing, C.R.; Krag, T.O.; Ruiz-Ruiz, C.; Risom, L.; Wibrand, F.; Høeg, L.D.; Kiens, B.;
et al. Adaptations in Mitochondrial Enzymatic Activity Occurs Independent of Genomic Dosage in Response to Aerobic Exercise Training and Deconditioning in Human Skeletal Muscle. Cells 2019, 8, 237.
https://doi.org/10.3390/cells8030237
AMA Style
Fritzen AM, Thøgersen FB, Thybo K, Vissing CR, Krag TO, Ruiz-Ruiz C, Risom L, Wibrand F, Høeg LD, Kiens B,
et al. Adaptations in Mitochondrial Enzymatic Activity Occurs Independent of Genomic Dosage in Response to Aerobic Exercise Training and Deconditioning in Human Skeletal Muscle. Cells. 2019; 8(3):237.
https://doi.org/10.3390/cells8030237
Chicago/Turabian Style
Fritzen, Andreas M., Frank B. Thøgersen, Kasper Thybo, Christoffer R. Vissing, Thomas O. Krag, Cristina Ruiz-Ruiz, Lotte Risom, Flemming Wibrand, Louise D. Høeg, Bente Kiens,
and et al. 2019. "Adaptations in Mitochondrial Enzymatic Activity Occurs Independent of Genomic Dosage in Response to Aerobic Exercise Training and Deconditioning in Human Skeletal Muscle" Cells 8, no. 3: 237.
https://doi.org/10.3390/cells8030237
APA Style
Fritzen, A. M., Thøgersen, F. B., Thybo, K., Vissing, C. R., Krag, T. O., Ruiz-Ruiz, C., Risom, L., Wibrand, F., Høeg, L. D., Kiens, B., Duno, M., Vissing, J., & Jeppesen, T. D.
(2019). Adaptations in Mitochondrial Enzymatic Activity Occurs Independent of Genomic Dosage in Response to Aerobic Exercise Training and Deconditioning in Human Skeletal Muscle. Cells, 8(3), 237.
https://doi.org/10.3390/cells8030237