Additively manufactured Ti scaffolds have been used for bone replacement and orthopaedic applications. In these applications, both morphological and mechanical properties are important for their in vivo performance. Additively manufactured Ti6Al4V triply periodic minimal surface (TPMS) scaffolds with diamond and gyroid structures are known to have high stiffness and high osseointegration properties, respectively. However, morphological deviations between the as-designed and as-built types of these scaffolds have not been studied before. In this study, the morphological and mechanical properties of diamond and gyroid scaffolds at macro and microscales were examined. The results demonstrated that the mean printed strut thickness was greater t...
This systematic comparison between sheet-based-TPMS and strut-based ordered and disordered Lattice t...
Powder Bed Fusion (PBF) additive manufacturing techniques have enabled the fabrication of geometrica...
Massive acetabular bone defects are difficult to treat with the currently available implants. Advanc...
Additive manufacturing has been used to develop a variety of scaffold designs for clinical and indus...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
In recent years, the triply periodic minimal surface (TPMS)-based scaffolds have been served as one ...
Scaffolds for bone regeneration have been investigated as bone substitutes in critical sized bone de...
Triply Periodic Minimal Surface (TPMS) structures fabricated via Additive Manufacturing (AM) have re...
Functionally graded scaffold (FGS) is designed to mimic the morphology, mechanical and biological pr...
Abstract Objective Mechanic strength, pore morphology and size are key factors for the three-dimensi...
Restoration of segmental defects in long bones remains a challenging task in orthopedic surgery. Alt...
Metallic orthopedic implants to replace or generate lost bones caused by traumatic road traffic inju...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Although the initial mechanical properties of additive-manufactured (AM) metal scaffolds have been t...
Additive manufacturing (AM) is a production method that enables the building of porous structures wi...
This systematic comparison between sheet-based-TPMS and strut-based ordered and disordered Lattice t...
Powder Bed Fusion (PBF) additive manufacturing techniques have enabled the fabrication of geometrica...
Massive acetabular bone defects are difficult to treat with the currently available implants. Advanc...
Additive manufacturing has been used to develop a variety of scaffold designs for clinical and indus...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
In recent years, the triply periodic minimal surface (TPMS)-based scaffolds have been served as one ...
Scaffolds for bone regeneration have been investigated as bone substitutes in critical sized bone de...
Triply Periodic Minimal Surface (TPMS) structures fabricated via Additive Manufacturing (AM) have re...
Functionally graded scaffold (FGS) is designed to mimic the morphology, mechanical and biological pr...
Abstract Objective Mechanic strength, pore morphology and size are key factors for the three-dimensi...
Restoration of segmental defects in long bones remains a challenging task in orthopedic surgery. Alt...
Metallic orthopedic implants to replace or generate lost bones caused by traumatic road traffic inju...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Although the initial mechanical properties of additive-manufactured (AM) metal scaffolds have been t...
Additive manufacturing (AM) is a production method that enables the building of porous structures wi...
This systematic comparison between sheet-based-TPMS and strut-based ordered and disordered Lattice t...
Powder Bed Fusion (PBF) additive manufacturing techniques have enabled the fabrication of geometrica...
Massive acetabular bone defects are difficult to treat with the currently available implants. Advanc...