3D printing is a diverse field, in particular for biological or bioengineering applications. As a result, research teams working in this area are often multidisciplinary. A (bio) 3D printer in this research environment should balance performance with ease of use to enable system adjustments and operation for all machine users from a wide range of disciplines. This work presented results in the development of an easy-to-use direct-write (DW) printing system for fabrication of rectilinear bone scaffolds. Common motion control problems, which are barriers to ease of use, were addressed and implemented in a way that researchers outside of the controls field could easily understand. The main goal of this work was to ensure that this system coul...
3D printing techniques are becoming state-of the art technique in the field of engineering research,...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
3D Printing promises to produce complex biomedical devices according to computer design using patien...
3D printing is a diverse field, in particular for biological or bioengineering applications. As a r...
SummaryThree-dimensional (3D) printers can create complex structures based on digital models. The co...
Successful materials design for bone tissue engineering requires an understanding of the composition...
Publisher Copyright: © 2021 by the authors. Licensee MDPI, Basel, Switzerland.Educational institutio...
consider to be a synonymous of additive manufacturing has made its way into the medical field, not o...
Millions of people suffer from damaged tissues or organs. The gold standard for treatment is tissue/...
3D printed bone scaffolds have the potential to replace autografts and allografts because of advanta...
Additive manufacturing (AM) which is commonly known as 3D printing is evolving quickly during the la...
Three-dimensional (3D) printers can create complex structures based on digital models. The combinati...
Additive manufacturing processes are powerful tools; they are capable of fabricating structures with...
Bio-Printing 3D organs, tissues & scaffolds is advancing everyday, with various methods being introd...
Three-dimensional (3D) printers can create complex structures based on digital models. The combinati...
3D printing techniques are becoming state-of the art technique in the field of engineering research,...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
3D Printing promises to produce complex biomedical devices according to computer design using patien...
3D printing is a diverse field, in particular for biological or bioengineering applications. As a r...
SummaryThree-dimensional (3D) printers can create complex structures based on digital models. The co...
Successful materials design for bone tissue engineering requires an understanding of the composition...
Publisher Copyright: © 2021 by the authors. Licensee MDPI, Basel, Switzerland.Educational institutio...
consider to be a synonymous of additive manufacturing has made its way into the medical field, not o...
Millions of people suffer from damaged tissues or organs. The gold standard for treatment is tissue/...
3D printed bone scaffolds have the potential to replace autografts and allografts because of advanta...
Additive manufacturing (AM) which is commonly known as 3D printing is evolving quickly during the la...
Three-dimensional (3D) printers can create complex structures based on digital models. The combinati...
Additive manufacturing processes are powerful tools; they are capable of fabricating structures with...
Bio-Printing 3D organs, tissues & scaffolds is advancing everyday, with various methods being introd...
Three-dimensional (3D) printers can create complex structures based on digital models. The combinati...
3D printing techniques are becoming state-of the art technique in the field of engineering research,...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
3D Printing promises to produce complex biomedical devices according to computer design using patien...