Ortuste Quiroga, H.P.; Ganassi, M.; Yokoyama, S.; Nakamura, K.; Yamashita, T.; Raimbach, D.; Hagiwara, A.; Harrington, O.; Breach-Teji, J.; Asakura, A.;
et al. Fine-Tuning of Piezo1 Expression and Activity Ensures Efficient Myoblast Fusion during Skeletal Myogenesis. Cells 2022, 11, 393.
https://doi.org/10.3390/cells11030393
AMA Style
Ortuste Quiroga HP, Ganassi M, Yokoyama S, Nakamura K, Yamashita T, Raimbach D, Hagiwara A, Harrington O, Breach-Teji J, Asakura A,
et al. Fine-Tuning of Piezo1 Expression and Activity Ensures Efficient Myoblast Fusion during Skeletal Myogenesis. Cells. 2022; 11(3):393.
https://doi.org/10.3390/cells11030393
Chicago/Turabian Style
Ortuste Quiroga, Huascar Pedro, Massimo Ganassi, Shingo Yokoyama, Kodai Nakamura, Tomohiro Yamashita, Daniel Raimbach, Arisa Hagiwara, Oscar Harrington, Jodie Breach-Teji, Atsushi Asakura,
and et al. 2022. "Fine-Tuning of Piezo1 Expression and Activity Ensures Efficient Myoblast Fusion during Skeletal Myogenesis" Cells 11, no. 3: 393.
https://doi.org/10.3390/cells11030393
APA Style
Ortuste Quiroga, H. P., Ganassi, M., Yokoyama, S., Nakamura, K., Yamashita, T., Raimbach, D., Hagiwara, A., Harrington, O., Breach-Teji, J., Asakura, A., Suzuki, Y., Tominaga, M., Zammit, P. S., & Goto, K.
(2022). Fine-Tuning of Piezo1 Expression and Activity Ensures Efficient Myoblast Fusion during Skeletal Myogenesis. Cells, 11(3), 393.
https://doi.org/10.3390/cells11030393