Szabó, V.T.; Szabó, B.; Barcsayné-Tátrai, N.; Mészáros, C.; Braunitzer, G.; Szabó, B.P.; Lassila, L.; Garoushi, S.; Fráter, M.
Fatigue Resistance of Dissected Lower First Molars Restored with Direct Fiber-Reinforced Bridges—An In Vitro Pilot Study. Polymers 2023, 15, 1343.
https://doi.org/10.3390/polym15061343
AMA Style
Szabó VT, Szabó B, Barcsayné-Tátrai N, Mészáros C, Braunitzer G, Szabó BP, Lassila L, Garoushi S, Fráter M.
Fatigue Resistance of Dissected Lower First Molars Restored with Direct Fiber-Reinforced Bridges—An In Vitro Pilot Study. Polymers. 2023; 15(6):1343.
https://doi.org/10.3390/polym15061343
Chicago/Turabian Style
Szabó, Veronika T., Balázs Szabó, Noémi Barcsayné-Tátrai, Csongor Mészáros, Gábor Braunitzer, Balázs P. Szabó, Lippo Lassila, Sufyan Garoushi, and Márk Fráter.
2023. "Fatigue Resistance of Dissected Lower First Molars Restored with Direct Fiber-Reinforced Bridges—An In Vitro Pilot Study" Polymers 15, no. 6: 1343.
https://doi.org/10.3390/polym15061343
APA Style
Szabó, V. T., Szabó, B., Barcsayné-Tátrai, N., Mészáros, C., Braunitzer, G., Szabó, B. P., Lassila, L., Garoushi, S., & Fráter, M.
(2023). Fatigue Resistance of Dissected Lower First Molars Restored with Direct Fiber-Reinforced Bridges—An In Vitro Pilot Study. Polymers, 15(6), 1343.
https://doi.org/10.3390/polym15061343