Modyanov, N.N.; Russo, L.; Lester, S.G.; Castañeda, T.R.; Marathe, H.G.; Fedorova, L.V.; Bourey, R.E.; Najjar, S.M.; de la Serna, I.L.
Ablation of the Evolutionarily Acquired Functions of the Atp1b4 Gene Increases Metabolic Capacity and Reduces Obesity. Life 2025, 15, 1103.
https://doi.org/10.3390/life15071103
AMA Style
Modyanov NN, Russo L, Lester SG, Castañeda TR, Marathe HG, Fedorova LV, Bourey RE, Najjar SM, de la Serna IL.
Ablation of the Evolutionarily Acquired Functions of the Atp1b4 Gene Increases Metabolic Capacity and Reduces Obesity. Life. 2025; 15(7):1103.
https://doi.org/10.3390/life15071103
Chicago/Turabian Style
Modyanov, Nikolai N., Lucia Russo, Sumona Ghosh Lester, Tamara R. Castañeda, Himangi G. Marathe, Larisa V. Fedorova, Raymond E. Bourey, Sonia M. Najjar, and Ivana L. de la Serna.
2025. "Ablation of the Evolutionarily Acquired Functions of the Atp1b4 Gene Increases Metabolic Capacity and Reduces Obesity" Life 15, no. 7: 1103.
https://doi.org/10.3390/life15071103
APA Style
Modyanov, N. N., Russo, L., Lester, S. G., Castañeda, T. R., Marathe, H. G., Fedorova, L. V., Bourey, R. E., Najjar, S. M., & de la Serna, I. L.
(2025). Ablation of the Evolutionarily Acquired Functions of the Atp1b4 Gene Increases Metabolic Capacity and Reduces Obesity. Life, 15(7), 1103.
https://doi.org/10.3390/life15071103