Sundekilde, U.K.; Yde, C.C.; Honore, A.H.; Caverly Rae, J.M.; Burns, F.R.; Mukerji, P.; Mawn, M.P.; Stenman, L.; Dragan, Y.; Glover, K.;
et al. An Integrated Multi-Omics Analysis Defines Key Pathway Alterations in a Diet-Induced Obesity Mouse Model. Metabolites 2020, 10, 80.
https://doi.org/10.3390/metabo10030080
AMA Style
Sundekilde UK, Yde CC, Honore AH, Caverly Rae JM, Burns FR, Mukerji P, Mawn MP, Stenman L, Dragan Y, Glover K,
et al. An Integrated Multi-Omics Analysis Defines Key Pathway Alterations in a Diet-Induced Obesity Mouse Model. Metabolites. 2020; 10(3):80.
https://doi.org/10.3390/metabo10030080
Chicago/Turabian Style
Sundekilde, Ulrik K., Christian C. Yde, Anders H. Honore, Jessica M. Caverly Rae, Frank R. Burns, Pushkor Mukerji, Michael P. Mawn, Lotta Stenman, Yvonne Dragan, Kyle Glover,
and et al. 2020. "An Integrated Multi-Omics Analysis Defines Key Pathway Alterations in a Diet-Induced Obesity Mouse Model" Metabolites 10, no. 3: 80.
https://doi.org/10.3390/metabo10030080
APA Style
Sundekilde, U. K., Yde, C. C., Honore, A. H., Caverly Rae, J. M., Burns, F. R., Mukerji, P., Mawn, M. P., Stenman, L., Dragan, Y., Glover, K., & Jensen, H. M.
(2020). An Integrated Multi-Omics Analysis Defines Key Pathway Alterations in a Diet-Induced Obesity Mouse Model. Metabolites, 10(3), 80.
https://doi.org/10.3390/metabo10030080