Brenmoehl, J.; Ohde, D.; Walz, C.; Langhammer, M.; Schultz, J.; Hoeflich, A.
Analysis of Activity-Dependent Energy Metabolism in Mice Reveals Regulation of Mitochondrial Fission and Fusion mRNA by Voluntary Physical Exercise in Subcutaneous Fat from Male Marathon Mice (DUhTP). Cells 2020, 9, 2697.
https://doi.org/10.3390/cells9122697
AMA Style
Brenmoehl J, Ohde D, Walz C, Langhammer M, Schultz J, Hoeflich A.
Analysis of Activity-Dependent Energy Metabolism in Mice Reveals Regulation of Mitochondrial Fission and Fusion mRNA by Voluntary Physical Exercise in Subcutaneous Fat from Male Marathon Mice (DUhTP). Cells. 2020; 9(12):2697.
https://doi.org/10.3390/cells9122697
Chicago/Turabian Style
Brenmoehl, Julia, Daniela Ohde, Christina Walz, Martina Langhammer, Julia Schultz, and Andreas Hoeflich.
2020. "Analysis of Activity-Dependent Energy Metabolism in Mice Reveals Regulation of Mitochondrial Fission and Fusion mRNA by Voluntary Physical Exercise in Subcutaneous Fat from Male Marathon Mice (DUhTP)" Cells 9, no. 12: 2697.
https://doi.org/10.3390/cells9122697
APA Style
Brenmoehl, J., Ohde, D., Walz, C., Langhammer, M., Schultz, J., & Hoeflich, A.
(2020). Analysis of Activity-Dependent Energy Metabolism in Mice Reveals Regulation of Mitochondrial Fission and Fusion mRNA by Voluntary Physical Exercise in Subcutaneous Fat from Male Marathon Mice (DUhTP). Cells, 9(12), 2697.
https://doi.org/10.3390/cells9122697