Pérez Gutiérrez, C.L.; Cottone, F.; Pagano, C.; Di Michele, A.; Puglia, D.; Luzi, F.; Dominici, F.; Sinisi, R.; Ricci, M.; Viseras Iborra, C.A.;
et al. The Optimization of Pressure-Assisted Microsyringe (PAM) 3D Printing Parameters for the Development of Sustainable Starch-Based Patches. Polymers 2023, 15, 3792.
https://doi.org/10.3390/polym15183792
AMA Style
Pérez Gutiérrez CL, Cottone F, Pagano C, Di Michele A, Puglia D, Luzi F, Dominici F, Sinisi R, Ricci M, Viseras Iborra CA,
et al. The Optimization of Pressure-Assisted Microsyringe (PAM) 3D Printing Parameters for the Development of Sustainable Starch-Based Patches. Polymers. 2023; 15(18):3792.
https://doi.org/10.3390/polym15183792
Chicago/Turabian Style
Pérez Gutiérrez, Carmen Laura, Francesco Cottone, Cinzia Pagano, Alessandro Di Michele, Debora Puglia, Francesca Luzi, Franco Dominici, Rossella Sinisi, Maurizio Ricci, César Antonio Viseras Iborra,
and et al. 2023. "The Optimization of Pressure-Assisted Microsyringe (PAM) 3D Printing Parameters for the Development of Sustainable Starch-Based Patches" Polymers 15, no. 18: 3792.
https://doi.org/10.3390/polym15183792
APA Style
Pérez Gutiérrez, C. L., Cottone, F., Pagano, C., Di Michele, A., Puglia, D., Luzi, F., Dominici, F., Sinisi, R., Ricci, M., Viseras Iborra, C. A., & Perioli, L.
(2023). The Optimization of Pressure-Assisted Microsyringe (PAM) 3D Printing Parameters for the Development of Sustainable Starch-Based Patches. Polymers, 15(18), 3792.
https://doi.org/10.3390/polym15183792