Beyond the personalisation aspect that it can bring to the medical field, additive manufacturing also gives access to the elaboration of cellular structures. These structures, with controlled porosity, make it possible both to modulate the mechanical properties of the object and to promote the cellular invasion necessary in tissue engineering. Among the metals commonly used in orthopaedic surgery, titanium alloys are those with the rigidity least distant from that of bone. This study therefore focuses on the development of structures made of Ti6-Al-4V, but also of magnesium since it has the advantage of being resorbable in the body. The scaffolds are obtained by robocasting, a process consisting of extruding, layer by layer, a pasty ink mad...
Orthopedic implants are under incessant advancement to improve their interactions with surrounding b...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Beyond the personalisation aspect that it can bring to the medical field, additive manufacturing als...
The growing demand for biomaterials has required of science great advances in the development of tec...
Magnesium particles are used in metallurgic routes, where it can be total or partially evaporated cr...
A l’heure actuelle, les alliages à bases de titane sont les matériaux les plus utilisés en implantol...
Calcium phosphate-based materials have become the first choice for surgeons when they look for a syn...
Cellular metals are a relatively new class of engineering materials that can be fabricated with eith...
Nowadays, the field of implants is one of the major challenges for our civilization to help improve ...
To date, titanium-based alloys (Ti) remain the most used implantable materials for load-bearing appl...
Mechanical properties of metallic materials can be controlled by not only alloy design but also cons...
La problématique initiale part du constat que les échecs d’implants sont souvent causés par une inad...
Since the last decade, degradable implants for bone fixation have attracted special attention. Among...
Magnesium (Mg) and its alloys offer potential as a new class of degradable metallic orthopaedic biom...
Orthopedic implants are under incessant advancement to improve their interactions with surrounding b...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Beyond the personalisation aspect that it can bring to the medical field, additive manufacturing als...
The growing demand for biomaterials has required of science great advances in the development of tec...
Magnesium particles are used in metallurgic routes, where it can be total or partially evaporated cr...
A l’heure actuelle, les alliages à bases de titane sont les matériaux les plus utilisés en implantol...
Calcium phosphate-based materials have become the first choice for surgeons when they look for a syn...
Cellular metals are a relatively new class of engineering materials that can be fabricated with eith...
Nowadays, the field of implants is one of the major challenges for our civilization to help improve ...
To date, titanium-based alloys (Ti) remain the most used implantable materials for load-bearing appl...
Mechanical properties of metallic materials can be controlled by not only alloy design but also cons...
La problématique initiale part du constat que les échecs d’implants sont souvent causés par une inad...
Since the last decade, degradable implants for bone fixation have attracted special attention. Among...
Magnesium (Mg) and its alloys offer potential as a new class of degradable metallic orthopaedic biom...
Orthopedic implants are under incessant advancement to improve their interactions with surrounding b...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...