Exercise-Related Glycemic Fluctuations in Type 1 Diabetes: Mechanisms and Integrated Insulin–Carbohydrate Strategies in the Context of Diabetes Technologies
Abstract
Share and Cite
Mazzeo, F.; Ferrara, G.; Moscatelli, F.; Monda, A.; Messina, A.; Ruberto, M.; Mancini, N.; Cincione, R.I.; Russo, G.; Allocca, S.; et al. Exercise-Related Glycemic Fluctuations in Type 1 Diabetes: Mechanisms and Integrated Insulin–Carbohydrate Strategies in the Context of Diabetes Technologies. Endocrines 2026, 7, 22. https://doi.org/10.3390/endocrines7020022
Mazzeo F, Ferrara G, Moscatelli F, Monda A, Messina A, Ruberto M, Mancini N, Cincione RI, Russo G, Allocca S, et al. Exercise-Related Glycemic Fluctuations in Type 1 Diabetes: Mechanisms and Integrated Insulin–Carbohydrate Strategies in the Context of Diabetes Technologies. Endocrines. 2026; 7(2):22. https://doi.org/10.3390/endocrines7020022
Chicago/Turabian StyleMazzeo, Filomena, Gabriele Ferrara, Fiorenzo Moscatelli, Antonietta Monda, Antonietta Messina, Maria Ruberto, Nicola Mancini, Raffaele Ivan Cincione, Gianluca Russo, Salvatore Allocca, and et al. 2026. "Exercise-Related Glycemic Fluctuations in Type 1 Diabetes: Mechanisms and Integrated Insulin–Carbohydrate Strategies in the Context of Diabetes Technologies" Endocrines 7, no. 2: 22. https://doi.org/10.3390/endocrines7020022
APA StyleMazzeo, F., Ferrara, G., Moscatelli, F., Monda, A., Messina, A., Ruberto, M., Mancini, N., Cincione, R. I., Russo, G., Allocca, S., La Marra, M., Perrone, P., Di Maio, G., Casillo, M., Messina, G., Ruggiero, M., Tafuri, M. G., & Monda, V. (2026). Exercise-Related Glycemic Fluctuations in Type 1 Diabetes: Mechanisms and Integrated Insulin–Carbohydrate Strategies in the Context of Diabetes Technologies. Endocrines, 7(2), 22. https://doi.org/10.3390/endocrines7020022

