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Bagheri, M. A., Aubin, C.-É., Nault, M.-L., & Villemure, I. (2025). Mechanical characterization of an origami-inspired super deformable metamaterial with high tunability for tissue engineering. Materials & Design, 251, 113701 (13 pages). Disponible
Bagheri, M. A., Aubin, C.-É., Nault, M.-L., & Villemure, I. (2025). Mechanical characterization of an origami-inspired super deformable metamaterial with high tunability for tissue engineering. Materials & Design, 251, 113701 (13 pages). Disponible
Bagheri, M. A., Aubin, C.-É., Nault, M.-L., & Villemure, I. (2025). Multi-objective optimization of an origami inspired super-expandable scaffold for distraction osteogenesis. Materials & Design, 258, 114620 (16 pages). Lien externe
Bagheri, M. A., Aubin, C.-É., Nault, M.-L., & Villemure, I. (2025). Mechanical characterization of an origami-inspired super deformable metamaterial with high tunability for tissue engineering. Materials & Design, 251, 113701 (13 pages). Disponible
Bagheri, M. A., Aubin, C.-É., Nault, M.-L., & Villemure, I. (2025). Multi-objective optimization of an origami inspired super-expandable scaffold for distraction osteogenesis. Materials & Design, 258, 114620 (16 pages). Lien externe