Friuli, M.; Cafarchia, C.; Cataldo, A.; Lia, R.P.; Otranto, D.; Pombi, M.; Demitri, C.
Proof of Concept of Biopolymer Based Hydrogels as Biomimetic Oviposition Substrate to Develop Tiger Mosquitoes (Aedes albopictus) Cost-Effective Lure and Kill Ovitraps. Bioengineering 2022, 9, 267.
https://doi.org/10.3390/bioengineering9070267
AMA Style
Friuli M, Cafarchia C, Cataldo A, Lia RP, Otranto D, Pombi M, Demitri C.
Proof of Concept of Biopolymer Based Hydrogels as Biomimetic Oviposition Substrate to Develop Tiger Mosquitoes (Aedes albopictus) Cost-Effective Lure and Kill Ovitraps. Bioengineering. 2022; 9(7):267.
https://doi.org/10.3390/bioengineering9070267
Chicago/Turabian Style
Friuli, Marco, Claudia Cafarchia, Andrea Cataldo, Riccardo Paolo Lia, Domenico Otranto, Marco Pombi, and Christian Demitri.
2022. "Proof of Concept of Biopolymer Based Hydrogels as Biomimetic Oviposition Substrate to Develop Tiger Mosquitoes (Aedes albopictus) Cost-Effective Lure and Kill Ovitraps" Bioengineering 9, no. 7: 267.
https://doi.org/10.3390/bioengineering9070267
APA Style
Friuli, M., Cafarchia, C., Cataldo, A., Lia, R. P., Otranto, D., Pombi, M., & Demitri, C.
(2022). Proof of Concept of Biopolymer Based Hydrogels as Biomimetic Oviposition Substrate to Develop Tiger Mosquitoes (Aedes albopictus) Cost-Effective Lure and Kill Ovitraps. Bioengineering, 9(7), 267.
https://doi.org/10.3390/bioengineering9070267