Bregenzer, M.; Li, Y.; Xie, K.; Gerich, L.; Mischer, M.; Röhrig, R.; Hölzle, F.; Hinrichs-Puladi, B.; Rashad, A.
Optimization of Material and Printing Parameter Selection for FDM 3D-Printed Bone Models for Osteotomy Training: A Biomechanical and User-Based Evaluation. Appl. Sci. 2026, 16, 8409.
https://doi.org/10.3390/app16178409
AMA Style
Bregenzer M, Li Y, Xie K, Gerich L, Mischer M, Röhrig R, Hölzle F, Hinrichs-Puladi B, Rashad A.
Optimization of Material and Printing Parameter Selection for FDM 3D-Printed Bone Models for Osteotomy Training: A Biomechanical and User-Based Evaluation. Applied Sciences. 2026; 16(17):8409.
https://doi.org/10.3390/app16178409
Chicago/Turabian Style
Bregenzer, Moritz, Yao Li, Kunpeng Xie, Leonhard Gerich, Max Mischer, Rainer Röhrig, Frank Hölzle, Behrus Hinrichs-Puladi, and Ashkan Rashad.
2026. "Optimization of Material and Printing Parameter Selection for FDM 3D-Printed Bone Models for Osteotomy Training: A Biomechanical and User-Based Evaluation" Applied Sciences 16, no. 17: 8409.
https://doi.org/10.3390/app16178409
APA Style
Bregenzer, M., Li, Y., Xie, K., Gerich, L., Mischer, M., Röhrig, R., Hölzle, F., Hinrichs-Puladi, B., & Rashad, A.
(2026). Optimization of Material and Printing Parameter Selection for FDM 3D-Printed Bone Models for Osteotomy Training: A Biomechanical and User-Based Evaluation. Applied Sciences, 16(17), 8409.
https://doi.org/10.3390/app16178409