Synthetic bone models are used to train surgeons as well as to test new medical devices. However, currently available models do not accurately mimic the complex structure of trabecular bone, which can provide erroneous results. This study aimed to investigate the suitability of stereolithography (SLA) to produce synthetic trabecular bone. Samples were printed based on synchrotron micro-computed tomography (micro-CT) images of human bone, with scaling factors from 1 to 4.3. Structure replicability was assessed with micro-CT, and mechanical properties were evaluated by compression and screw pull-out tests. The overall geometry was well-replicated at scale 1.8, with a volume difference to the original model of <10%. However, scaling factors be...
The present work shows how 3D models extracted from a computerised tomography (CT) scan can be proce...
Abstract: The 3D modelling and printing of anthropomorphic 3D models based on CT are essential to m...
The paper deals with investigation on directional variations of mechanical response in 3D printed mo...
Synthetic bone models are used to train surgeons as well as to test new medical devices. However, cu...
PURPOSE: Advances in additive manufacturing processes are enabling the fabrication of surrogate bone...
Purpose: Advances in additive manufacturing processes are enabling the fabrication of surrogate bone...
Trabecular bone structure is complex and unique (i.e. no two tissues are the same). This introduces ...
Previously, we performed a study using a 3D-printer to test the effect of cancellous bone deteriorat...
3Purpose: Additive manufacturing played a keyrole in investigating the precision of a recently-devel...
Introduction Three-dimensional (3D) printing provides an opportunity to develop anthropomorphic c...
Recent developments in three-dimensional (3D) printing technology offer immense potential in fabrica...
Trabecular bone is a complex 3D mesh of bony rods and plates, which is found internally to the corte...
Abstract The two most popular models used in anatomical training for residents, clinicians, or surge...
Stereolithography (STL) models of complex cancellous bone structures have been produced from three-d...
A novel approach to manufacturing biocompatible ceramic scaffolds for tissue engineering using a mic...
The present work shows how 3D models extracted from a computerised tomography (CT) scan can be proce...
Abstract: The 3D modelling and printing of anthropomorphic 3D models based on CT are essential to m...
The paper deals with investigation on directional variations of mechanical response in 3D printed mo...
Synthetic bone models are used to train surgeons as well as to test new medical devices. However, cu...
PURPOSE: Advances in additive manufacturing processes are enabling the fabrication of surrogate bone...
Purpose: Advances in additive manufacturing processes are enabling the fabrication of surrogate bone...
Trabecular bone structure is complex and unique (i.e. no two tissues are the same). This introduces ...
Previously, we performed a study using a 3D-printer to test the effect of cancellous bone deteriorat...
3Purpose: Additive manufacturing played a keyrole in investigating the precision of a recently-devel...
Introduction Three-dimensional (3D) printing provides an opportunity to develop anthropomorphic c...
Recent developments in three-dimensional (3D) printing technology offer immense potential in fabrica...
Trabecular bone is a complex 3D mesh of bony rods and plates, which is found internally to the corte...
Abstract The two most popular models used in anatomical training for residents, clinicians, or surge...
Stereolithography (STL) models of complex cancellous bone structures have been produced from three-d...
A novel approach to manufacturing biocompatible ceramic scaffolds for tissue engineering using a mic...
The present work shows how 3D models extracted from a computerised tomography (CT) scan can be proce...
Abstract: The 3D modelling and printing of anthropomorphic 3D models based on CT are essential to m...
The paper deals with investigation on directional variations of mechanical response in 3D printed mo...