[HTML][HTML] Mechanical and biological properties of enhanced porous scaffolds based on triply periodic minimal surfaces

S Zou, Y Mu, B Pan, G Li, L Shao, J Du, Y Jin - Materials & Design, 2022 - Elsevier
Triply periodic minimal surfaces (TPMS)-based porous structures have been universally
adopted for mimicking the properties of bone scaffolds due to their interconnected …

Pullout strength of triply periodic minimal surface-structured bone implants

YY Tsai, SW Chang - International Journal of Mechanical Sciences, 2023 - Elsevier
Porous bone implants, such as triply periodic minimal surface structures (TPMS) bone
implants, are thriving due to controllable physical properties, better osseointegration, and …

[HTML][HTML] Ceramic additive manufacturing and microstructural analysis of tricalcium phosphate implants using X-ray microcomputed tomography

S Senck, J Glinz, S Heupl, J Kastner, K Trieb… - Open Ceramics, 2024 - Elsevier
Additive manufacturing (AM) of ceramic bone implants from tricalcium phosphate (TCP)
offers several benefits for bone regeneration and defect treatment. TCP scaffolds, eg …

Low elastic modulus and highly porous triply periodic minimal surfaces architectured implant for orthopedic applications

R Verma, J Kumar, NK Singh, SK Rai… - Proceedings of the …, 2022 - journals.sagepub.com
A mismatch between the implant and interacting bone Young's modulus causes stress
shielding phenomena, which leads to instability of the implant and early failure. This paper …

[HTML][HTML] Towards improved functionality of mandibular reconstruction plates enabled by additively manufactured triply periodic minimal surface structures

Z Alomar, M Aramesh, A Thor, C Persson… - Journal of the …, 2025 - Elsevier
Additive manufacturing for fabrication of patient-specific oral and maxillofacial implants
enables optimal fitting, significantly reducing surgery time and subsequent costs. However, it …

Andamios porosos para regeneración de tejido óseo fabricados por manufactura aditiva

A González González - 2021 - rein.umcc.cu
Los andamios porosos para regeneración de tejidos son la alternativa más económica y
viable respecto a las técnicas tradicionales de implantes y pueden fabricarse con estructura …