Please use this identifier to cite or link to this item: http://hdl.handle.net/10553/130488
Title: Mechanical and permeability properties of skeletal and sheet triply periodic minimal surface scaffolds in bone defect reconstruction
Authors: Yánez Santana, Manuel Alejandro 
Cuadrado Hernández, Alberto Javier 
Martel Fuentes, Oscar 
Fiorucci, Maria Paula 
Deviaene, Sebastiaan
UNESCO Clasification: 3313 Tecnología e ingeniería mecánicas
Keywords: Triply Period Minimal Surface Scaffolds
Sheet Gyroid Scaffolds
Skeletal Gyroid Scaffolds
Bone Defect Reconstruction
Laser Powder Bed Fusion
Issue Date: 2024
Project: Análisis Biomecánicoy Biológico de la Combinación de Sistema de Osteosíntesisy Scaffold Para la Reparación de Defectos Óseos Segmentarios 
Journal: Results in Engineering 
Abstract: Triply periodic minimal surface (TPMS) structures have proven to be suitable for biomorphic scaffold designs orientated towards bone ingrowth applications. In this work, different types of gyroid Ti-6Al-4V scaffolds (skeletal-TPMS-based and sheet-TMPS-based) have been designed and fabricated by laser powder bed fusion for the purposes of analysing them and clarifying which type of scaffolds could be the best option to use in bone defect repair. The compression and bending tests conducted demonstrated that the skeletal gyroid scaffolds were flexible enough to promote bone healing. On the other hand, the sheet gyroid scaffolds tested might be too rigid to promote optimal bone growth inside the scaffold. The torsional properties were acceptable for most of the scaffolds. The values of Darcian permeability for all the tested scaffolds seemed to promote bone rather than cartilage ingrowth.
URI: http://hdl.handle.net/10553/130488
ISSN: 2590-1230
DOI: 10.1016/j.rineng.2024.101883
Source: Results In Engineering [ISSN 2590-1230], v. 21, (Marzo 2024)
Appears in Collections:Artículos
Adobe PDF (13,29 MB)
Show full item record

Google ScholarTM

Check

Altmetric


Share



Export metadata



Items in accedaCRIS are protected by copyright, with all rights reserved, unless otherwise indicated.