Aguado, M.; Saldaña, L.; Pérez del RÃo, E.; Guasch, J.; Parera, M.; Córdoba, A.; Seras-Franzoso, J.; Cano-Garrido, O.; Vázquez, E.; Villaverde, A.;
et al. Polylactide, Processed by a Foaming Method Using Compressed Freon R134a, for Tissue Engineering. Polymers 2021, 13, 3453.
https://doi.org/10.3390/polym13203453
AMA Style
Aguado M, Saldaña L, Pérez del RÃo E, Guasch J, Parera M, Córdoba A, Seras-Franzoso J, Cano-Garrido O, Vázquez E, Villaverde A,
et al. Polylactide, Processed by a Foaming Method Using Compressed Freon R134a, for Tissue Engineering. Polymers. 2021; 13(20):3453.
https://doi.org/10.3390/polym13203453
Chicago/Turabian Style
Aguado, MarÃa, Laura Saldaña, Eduardo Pérez del RÃo, Judith Guasch, Marc Parera, Alba Córdoba, JoaquÃn Seras-Franzoso, Olivia Cano-Garrido, Esther Vázquez, Antonio Villaverde,
and et al. 2021. "Polylactide, Processed by a Foaming Method Using Compressed Freon R134a, for Tissue Engineering" Polymers 13, no. 20: 3453.
https://doi.org/10.3390/polym13203453
APA Style
Aguado, M., Saldaña, L., Pérez del RÃo, E., Guasch, J., Parera, M., Córdoba, A., Seras-Franzoso, J., Cano-Garrido, O., Vázquez, E., Villaverde, A., Veciana, J., Ratera, I., Vilaboa, N., & Ventosa, N.
(2021). Polylactide, Processed by a Foaming Method Using Compressed Freon R134a, for Tissue Engineering. Polymers, 13(20), 3453.
https://doi.org/10.3390/polym13203453