[HTML][HTML] Machine Learning approaches for the design of biomechanically compatible bone tissue engineering scaffolds

S Ibrahimi, L D'Andrea, D Gastaldi, MW Rivolta… - Computer Methods in …, 2024 - Elsevier
Abstract Triply-Periodic Minimal Surfaces (TPMS) analytical formulation does not provide a
direct correlation between the input parameters (analytical) and the mechanical and …

[HTML][HTML] Vat photopolymerization of ultra-porous bioactive glass foams

F Baino, F Gaido, R Gabrieli, D Alidoost, A Schiavi… - Open Ceramics, 2024 - Elsevier
The introduction of additive manufacturing technologies in the field of biomaterials science
has opened new horizons for regenerative medicine. In this work, we pushed the potential of …

Computational Modelling and Simulation of Scaffolds for Bone Tissue Engineering

HS N. Musthafa, J Walker, M Domagala - Computation, 2024 - mdpi.com
Three-dimensional porous scaffolds are substitutes for traditional bone grafts in bone tissue
engineering (BTE) applications to restore and treat bone injuries and defects. The use of …

[HTML][HTML] Elastic and failure characterization of hydroxyapatite TPMS scaffolds using a combined approach of ultrasound, compression tests and micro-CT based …

L D'Andrea, R Gabrieli, L Milano, L Magagnin… - Acta Materialia, 2025 - Elsevier
Hydroxyapatite is a widely used ceramic material for bone tissue engineering. For creating
suitable scaffolds, reliable design and thorough characterization are essential. In this study …

Nature-inspired orientation-dependent toughening mechanism for TPMS ceramic architectures

L D'Andrea, T Yang, M Dao, P Vena - MRS Bulletin, 2025 - Springer
Triply periodic minimal surfaces (TPMSs) have been extensively studied in many fields of
engineering, including bone tissue scaffolds. Recent advancements in manufacturing have …