3D printing (3DP) is a widely investigated scaffold manufacturing process for Tissue Engineering (TE). Useful scaffold geometries should have high porosity (60-80%) with small (100-500 μm) interconnected pores. Therefore dimensional accuracy on the micron level is one of the crucial parameters of the bone scaffolds. Previously it was shown that the behavior of scaffold geometries can be well simulated with Finite Element Modeling (FEM) however the prediction of actual strength and stiffness values are dependent on dimensional accuracy. This accuracy is in turn dependent on several parameters including particle size and shape, powderbinder interaction, and machine setup. In this work different scaffold strut sizes (0.3 - 0.5 mm) have ...
Bone implants are medical procedures involving replacement or reconstruction of missing or damaged b...
Additive manufacturing (AM) techniques are becoming the approaches of choice for the construction o...
With the recent improvements in three dimensional (3D) printing technologies, the potential for tiss...
3D printing (3DP) is a widely investigated scaffold manufacturing process for Tissue Engineering (T...
Abstract Additive manufacturing methods such as three-dimensional printing (3DP) show a great potent...
AbstractAdditive manufacturing methods such as three-dimensional printing (3DP) show a great potenti...
AbstractRecent advancements in computational design and additive manufacturing have enabled the fabr...
Additive Manufacturing (AM) technologies had widely used in most of the application such as aeronaut...
This article belongs to the Special Issue Numerical Simulation in Biomechanics and Biomedical Engine...
International audienceAdditive manufacturing (AM) of scaffolds enables the fabrication of customized...
Recent advancements in computational design and additive manufacturing have enabled the fabrication ...
In the last two decades, additive manufacturing (AM) has made significant progress towards the fabri...
Techniques to restore and replace bones in large fractures are still a major clinical need in the f...
Bone implants are medical procedures involving replacement or reconstruction of missing or damaged b...
Powder-based inkjet 3D printing method is one of the most attractive solid free form techniques. It ...
Bone implants are medical procedures involving replacement or reconstruction of missing or damaged b...
Additive manufacturing (AM) techniques are becoming the approaches of choice for the construction o...
With the recent improvements in three dimensional (3D) printing technologies, the potential for tiss...
3D printing (3DP) is a widely investigated scaffold manufacturing process for Tissue Engineering (T...
Abstract Additive manufacturing methods such as three-dimensional printing (3DP) show a great potent...
AbstractAdditive manufacturing methods such as three-dimensional printing (3DP) show a great potenti...
AbstractRecent advancements in computational design and additive manufacturing have enabled the fabr...
Additive Manufacturing (AM) technologies had widely used in most of the application such as aeronaut...
This article belongs to the Special Issue Numerical Simulation in Biomechanics and Biomedical Engine...
International audienceAdditive manufacturing (AM) of scaffolds enables the fabrication of customized...
Recent advancements in computational design and additive manufacturing have enabled the fabrication ...
In the last two decades, additive manufacturing (AM) has made significant progress towards the fabri...
Techniques to restore and replace bones in large fractures are still a major clinical need in the f...
Bone implants are medical procedures involving replacement or reconstruction of missing or damaged b...
Powder-based inkjet 3D printing method is one of the most attractive solid free form techniques. It ...
Bone implants are medical procedures involving replacement or reconstruction of missing or damaged b...
Additive manufacturing (AM) techniques are becoming the approaches of choice for the construction o...
With the recent improvements in three dimensional (3D) printing technologies, the potential for tiss...