Torabi, T.; Harasy, M.J.; Tahmoresnezhad, J.; Malekmohammadi, S.; Iulianelli, A.; Ghasemzadeh, K.
Machine Learning–Driven Surrogate Modeling and Operating-Point Selection for a Microfluidic Diffusion-Membrane Platform for Transdermal Drug Delivery. Membranes 2026, 16, 239.
https://doi.org/10.3390/membranes16070239
AMA Style
Torabi T, Harasy MJ, Tahmoresnezhad J, Malekmohammadi S, Iulianelli A, Ghasemzadeh K.
Machine Learning–Driven Surrogate Modeling and Operating-Point Selection for a Microfluidic Diffusion-Membrane Platform for Transdermal Drug Delivery. Membranes. 2026; 16(7):239.
https://doi.org/10.3390/membranes16070239
Chicago/Turabian Style
Torabi, Tara, Mahsa Jafar Harasy, Jafar Tahmoresnezhad, Samira Malekmohammadi, Adolfo Iulianelli, and Kamran Ghasemzadeh.
2026. "Machine Learning–Driven Surrogate Modeling and Operating-Point Selection for a Microfluidic Diffusion-Membrane Platform for Transdermal Drug Delivery" Membranes 16, no. 7: 239.
https://doi.org/10.3390/membranes16070239
APA Style
Torabi, T., Harasy, M. J., Tahmoresnezhad, J., Malekmohammadi, S., Iulianelli, A., & Ghasemzadeh, K.
(2026). Machine Learning–Driven Surrogate Modeling and Operating-Point Selection for a Microfluidic Diffusion-Membrane Platform for Transdermal Drug Delivery. Membranes, 16(7), 239.
https://doi.org/10.3390/membranes16070239