Tulukcuoglu Guneri, E.; Lakis, E.; Hajji, I.; Martin, E.; Champ, J.; Rampanou, A.; Pierga, J.-Y.; Viovy, J.-L.; Proudhon, C.; Bidard, F.-C.;
et al. Deciphering HER2-HER3 Dimerization at the Single CTC Level: A Microfluidic Approach. Cancers 2022, 14, 1890.
https://doi.org/10.3390/cancers14081890
AMA Style
Tulukcuoglu Guneri E, Lakis E, Hajji I, Martin E, Champ J, Rampanou A, Pierga J-Y, Viovy J-L, Proudhon C, Bidard F-C,
et al. Deciphering HER2-HER3 Dimerization at the Single CTC Level: A Microfluidic Approach. Cancers. 2022; 14(8):1890.
https://doi.org/10.3390/cancers14081890
Chicago/Turabian Style
Tulukcuoglu Guneri, Ezgi, Emile Lakis, Ismail Hajji, Elian Martin, Jerome Champ, Aurore Rampanou, Jean-Yves Pierga, Jean-Louis Viovy, Charlotte Proudhon, François-Clément Bidard,
and et al. 2022. "Deciphering HER2-HER3 Dimerization at the Single CTC Level: A Microfluidic Approach" Cancers 14, no. 8: 1890.
https://doi.org/10.3390/cancers14081890
APA Style
Tulukcuoglu Guneri, E., Lakis, E., Hajji, I., Martin, E., Champ, J., Rampanou, A., Pierga, J.-Y., Viovy, J.-L., Proudhon, C., Bidard, F.-C., & Descroix, S.
(2022). Deciphering HER2-HER3 Dimerization at the Single CTC Level: A Microfluidic Approach. Cancers, 14(8), 1890.
https://doi.org/10.3390/cancers14081890