Extrusion-based 3D printing followed by debinding and sintering is a powerful approach that allows for the fabrication of porous scaffolds from materials (or material combinations) that are otherwise very challenging to process using other additive manufacturing techniques. Iron is one of the materials that have been recently shown to be amenable to processing using this approach. Indeed, a fully interconnected porous design has the potential of resolving the fundamental issue regarding bulk iron, namely a very low rate of biodegradation. However, no extensive evaluation of the biodegradation behavior and properties of porous iron scaffolds made by extrusion-based 3D printing has been reported. Therefore, the in vitro biodegradation behavio...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Open-source 3D printers have become a popular technology for inexpensively and rapidly fabricating t...
Extrusion-based 3D printing followed by debinding and sintering is a powerful approach that allows f...
Additively manufactured (AM) topologically ordered porous metallic biomaterials with the proper biod...
Advanced additive manufacturing techniques have been recently used to tackle the two fundamental cha...
Biodegradable metals have been extensively studied due to their potential use as temporary biomedica...
Since we are able to use 3D printers, producing porous metal scaffolds become very easy. Contrary to...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Some basic requirements of bone tissue engineering include cells derived from bone tissues, three-di...
Biodegradable porous magnesium (Mg) scaffolds are promising for application in the regeneration of c...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
Three-dimensional printing technologies have shown distinct advantages to create porous scaffolds wi...
Absorbable metals have been proposed as potential materials for hard tissue scaffolding to offer bot...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Open-source 3D printers have become a popular technology for inexpensively and rapidly fabricating t...
Extrusion-based 3D printing followed by debinding and sintering is a powerful approach that allows f...
Additively manufactured (AM) topologically ordered porous metallic biomaterials with the proper biod...
Advanced additive manufacturing techniques have been recently used to tackle the two fundamental cha...
Biodegradable metals have been extensively studied due to their potential use as temporary biomedica...
Since we are able to use 3D printers, producing porous metal scaffolds become very easy. Contrary to...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Some basic requirements of bone tissue engineering include cells derived from bone tissues, three-di...
Biodegradable porous magnesium (Mg) scaffolds are promising for application in the regeneration of c...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
Three-dimensional printing technologies have shown distinct advantages to create porous scaffolds wi...
Absorbable metals have been proposed as potential materials for hard tissue scaffolding to offer bot...
Porous biodegradable Mg and its alloys are considered to have a great potential to serve as ideal bo...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Open-source 3D printers have become a popular technology for inexpensively and rapidly fabricating t...