International audienceAdditive manufacturing (AM) of scaffolds enables the fabrication of customized patient-specific implants for tissue regeneration. Scaffold customization does not involve only the macroscale shape of the final implant, but also their microscopic pore geometry and material properties, which are dependent on optimizable topology. A good match between the experimental data of AM scaffolds and the models is obtained when there is just a few millimetres at least in one direction. Here, we describe a methodology to perform finite element modelling on AM scaffolds for bone tissue regeneration with clinically relevant dimensions (i.e., volume > 1 cm3). The simulation used an equivalent cubic eight node finite elements mesh, and...
Additive manufacturing (AM), nowadays commonly known as 3D printing, is a revolutionary materials pr...
Bone is a living tissue that is able to regenerate by itself. However, when severe bone defects occu...
This study investigates the design, workflow and manufacture of highly porous, resorbable additively...
International audienceAdditive manufacturing (AM) of scaffolds enables the fabrication of customized...
This article belongs to the Special Issue Numerical Simulation in Biomechanics and Biomedical Engine...
3D printing (3DP) is a widely investigated scaffold manufacturing process for Tissue Engineering (T...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
The suitability of a scaffold for tissue engineering is determined by a number of interrelated facto...
Current materials used to fill bone defects (ceramics, cement) either lack strength or do not induce...
Bone scaffolding is a promising approach for the treatment of critical-size bone defects. Hydroxyapa...
Internal architecture of tissue scaffolds plays a significant role in their ability to heal critical...
Metallic orthopedic implants to replace or generate lost bones caused by traumatic road traffic inju...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
Additive manufacturing (AM), nowadays commonly known as 3D printing, is a revolutionary materials pr...
Additive manufacturing (AM) is a rapidly emerging technology that has the potential to produce perso...
Additive manufacturing (AM), nowadays commonly known as 3D printing, is a revolutionary materials pr...
Bone is a living tissue that is able to regenerate by itself. However, when severe bone defects occu...
This study investigates the design, workflow and manufacture of highly porous, resorbable additively...
International audienceAdditive manufacturing (AM) of scaffolds enables the fabrication of customized...
This article belongs to the Special Issue Numerical Simulation in Biomechanics and Biomedical Engine...
3D printing (3DP) is a widely investigated scaffold manufacturing process for Tissue Engineering (T...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
The suitability of a scaffold for tissue engineering is determined by a number of interrelated facto...
Current materials used to fill bone defects (ceramics, cement) either lack strength or do not induce...
Bone scaffolding is a promising approach for the treatment of critical-size bone defects. Hydroxyapa...
Internal architecture of tissue scaffolds plays a significant role in their ability to heal critical...
Metallic orthopedic implants to replace or generate lost bones caused by traumatic road traffic inju...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
Additive manufacturing (AM), nowadays commonly known as 3D printing, is a revolutionary materials pr...
Additive manufacturing (AM) is a rapidly emerging technology that has the potential to produce perso...
Additive manufacturing (AM), nowadays commonly known as 3D printing, is a revolutionary materials pr...
Bone is a living tissue that is able to regenerate by itself. However, when severe bone defects occu...
This study investigates the design, workflow and manufacture of highly porous, resorbable additively...