González-MartĂn, J.M.; Torres-Mata, L.B.; Cazorla-Rivero, S.; Fernández-Santana, C.; GĂłmez-Bentolila, E.; Clavo, B.; RodrĂguez-EsparragĂłn, F.
An Artificial Intelligence Prediction Model of Insulin Sensitivity, Insulin Resistance, and Diabetes Using Genes Obtained through Differential Expression. Genes 2023, 14, 2119.
https://doi.org/10.3390/genes14122119
AMA Style
González-MartĂn JM, Torres-Mata LB, Cazorla-Rivero S, Fernández-Santana C, GĂłmez-Bentolila E, Clavo B, RodrĂguez-EsparragĂłn F.
An Artificial Intelligence Prediction Model of Insulin Sensitivity, Insulin Resistance, and Diabetes Using Genes Obtained through Differential Expression. Genes. 2023; 14(12):2119.
https://doi.org/10.3390/genes14122119
Chicago/Turabian Style
González-MartĂn, JesĂşs MarĂa, Laura B. Torres-Mata, Sara Cazorla-Rivero, Cristina Fernández-Santana, Estrella GĂłmez-Bentolila, Bernardino Clavo, and Francisco RodrĂguez-EsparragĂłn.
2023. "An Artificial Intelligence Prediction Model of Insulin Sensitivity, Insulin Resistance, and Diabetes Using Genes Obtained through Differential Expression" Genes 14, no. 12: 2119.
https://doi.org/10.3390/genes14122119
APA Style
González-MartĂn, J. M., Torres-Mata, L. B., Cazorla-Rivero, S., Fernández-Santana, C., GĂłmez-Bentolila, E., Clavo, B., & RodrĂguez-EsparragĂłn, F.
(2023). An Artificial Intelligence Prediction Model of Insulin Sensitivity, Insulin Resistance, and Diabetes Using Genes Obtained through Differential Expression. Genes, 14(12), 2119.
https://doi.org/10.3390/genes14122119