Pflaum, M.; Jurmann, S.; Katsirntaki, K.; Mälzer, M.; Haverich, A.; Wiegmann, B.
Towards Biohybrid Lung Development—Fibronectin-Coating Bestows Hemocompatibility of Gas Exchange Hollow Fiber Membranes by Improving Flow-Resistant Endothelialization. Membranes 2022, 12, 35.
https://doi.org/10.3390/membranes12010035
AMA Style
Pflaum M, Jurmann S, Katsirntaki K, Mälzer M, Haverich A, Wiegmann B.
Towards Biohybrid Lung Development—Fibronectin-Coating Bestows Hemocompatibility of Gas Exchange Hollow Fiber Membranes by Improving Flow-Resistant Endothelialization. Membranes. 2022; 12(1):35.
https://doi.org/10.3390/membranes12010035
Chicago/Turabian Style
Pflaum, Michael, Sophie Jurmann, Katherina Katsirntaki, Marisa Mälzer, Axel Haverich, and Bettina Wiegmann.
2022. "Towards Biohybrid Lung Development—Fibronectin-Coating Bestows Hemocompatibility of Gas Exchange Hollow Fiber Membranes by Improving Flow-Resistant Endothelialization" Membranes 12, no. 1: 35.
https://doi.org/10.3390/membranes12010035
APA Style
Pflaum, M., Jurmann, S., Katsirntaki, K., Mälzer, M., Haverich, A., & Wiegmann, B.
(2022). Towards Biohybrid Lung Development—Fibronectin-Coating Bestows Hemocompatibility of Gas Exchange Hollow Fiber Membranes by Improving Flow-Resistant Endothelialization. Membranes, 12(1), 35.
https://doi.org/10.3390/membranes12010035