Design and analysis of biomedical scaffolds using TPMS-based porous structures inspired from additive manufacturing

R Verma, J Kumar, NK Singh, SK Rai, KK Saxena, J Xu - Coatings, 2022 - mdpi.com
Gyroid (G) and primitive (P) porous structures have multiple application areas, ranging from
thermal to mechanical, and fall in the complex triply periodic minimal surface (TPMS) …

Functional characterization of biomechanical loading and biocorrosion resistance properties of novel additively manufactured porous CoCrMo implant: Comparative …

P Munyensanga, M Bricha, K El Mabrouk - Materials Chemistry and …, 2024 - Elsevier
Notably, successful clinical outcomes of additively manufactured porous metallic implants
require careful consideration of factors such as porosity, pore size, and pore …

Simulated tissue growth in tetragonal lattices with mechanical stiffness tuned for bone tissue engineering

AME Arefin, M Lahowetz, PF Egan - Computers in Biology and Medicine, 2021 - Elsevier
Bone tissue engineering approaches have recently begun considering 3D printed lattices as
viable scaffold solutions due to their highly tunable geometries and mechanical efficiency …

Computational study promoting engineering biomaterial pre-design to well adapt pores distribution on bone/scaffold assembly section

A Boucetta, S Ramtani, DA Garzón-Alvarado… - Computer Methods in …, 2024 - Elsevier
When bio-grafts are used in bone healing, interstitial fluid flow (IFF) plays a critical role in
both, enhancing bone remodeling and promoting scaffold degradation. Through this …

Computational Design Generation and Evaluation of Beam-Based Tetragonal Bravais Lattice Structures for Tissue Engineering

AME Arefin, PF Egan - … Technical Conferences and …, 2020 - asmedigitalcollection.asme.org
The study and application of computational design is gaining importance in biomedical
engineering as medical devices are becoming more complex, especially with the …