Morotti, M.; Garofalo, S.; Cocozza, G.; Antonangeli, F.; Bianconi, V.; Mozzetta, C.; De Stefano, M.E.; Capitani, R.; Wulff, H.; Limatola, C.;
et al. Muscle Damage in Dystrophic mdx Mice Is Influenced by the Activity of Ca2+-Activated KCa3.1 Channels. Life 2022, 12, 538.
https://doi.org/10.3390/life12040538
AMA Style
Morotti M, Garofalo S, Cocozza G, Antonangeli F, Bianconi V, Mozzetta C, De Stefano ME, Capitani R, Wulff H, Limatola C,
et al. Muscle Damage in Dystrophic mdx Mice Is Influenced by the Activity of Ca2+-Activated KCa3.1 Channels. Life. 2022; 12(4):538.
https://doi.org/10.3390/life12040538
Chicago/Turabian Style
Morotti, Marta, Stefano Garofalo, Germana Cocozza, Fabrizio Antonangeli, Valeria Bianconi, Chiara Mozzetta, Maria Egle De Stefano, Riccardo Capitani, Heike Wulff, Cristina Limatola,
and et al. 2022. "Muscle Damage in Dystrophic mdx Mice Is Influenced by the Activity of Ca2+-Activated KCa3.1 Channels" Life 12, no. 4: 538.
https://doi.org/10.3390/life12040538
APA Style
Morotti, M., Garofalo, S., Cocozza, G., Antonangeli, F., Bianconi, V., Mozzetta, C., De Stefano, M. E., Capitani, R., Wulff, H., Limatola, C., Catalano, M., & Grassi, F.
(2022). Muscle Damage in Dystrophic mdx Mice Is Influenced by the Activity of Ca2+-Activated KCa3.1 Channels. Life, 12(4), 538.
https://doi.org/10.3390/life12040538