Nowadays, the commercial translation of additive manufacturing technologies for scaffolds fabrication is still a challenge. The production methodology of 3D scaffolds for tissue regeneration is a complex and discontinuous process involving several stages, from the isolation of the stem cells to the dynamic cell culture in vitro. Even though in this scenario industries are increasingly implementing automated robotic systems, current technologies are not enough to realize a large industrial scale scaffold fabrication. Accordingly, a relevant improvement could raise from the implementation of a modern collaborative workplace in an existing production line, combining strength endurance and accuracy of cobots, with intelligence, flexibility, and...
The current focus in the field of life science is the use of tissue engineering scaffolds to repair ...
The goal of scaffold-based tissue engineering is to create synthetic replacements for natural tissue...
Introduction Tissue engineering (TE) is a multidisciplinary field that combines the principles of en...
Nowadays, the commercial translation of additive manufacturing technologies for scaffolds fabricatio...
Tissue Engineering (TE) aims at repairing a damaged tissues or enhancing a specific tissue function....
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
Collaborative robotics and additive manufacturing are two enabling technologies of the Industry 4.0 ...
© 2020 Elsevier Ltd Most available 3D biofabrication technologies rely on single-component depositio...
In biofabrication, researchers aim to produce three-dimensional (3D) constructs for the regeneration...
Most available 3D biofabrication technologies rely on single-component deposition methods, such as i...
Most available 3D biofabrication technologies rely on single-component deposition methods, such as i...
The ability to test large arrays of cell and biomaterial combinations in 3D environments is still ra...
The lack of tissue regeneration after trauma, degenerative diseases and other pathologies is a highl...
Biofabrication, specifically 3D-Bioprinting, has the potential to disruptively impact a wide range o...
Human Robot Collaboration (HRC) have proved to be effective if compared to traditional hybrid automa...
The current focus in the field of life science is the use of tissue engineering scaffolds to repair ...
The goal of scaffold-based tissue engineering is to create synthetic replacements for natural tissue...
Introduction Tissue engineering (TE) is a multidisciplinary field that combines the principles of en...
Nowadays, the commercial translation of additive manufacturing technologies for scaffolds fabricatio...
Tissue Engineering (TE) aims at repairing a damaged tissues or enhancing a specific tissue function....
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
Collaborative robotics and additive manufacturing are two enabling technologies of the Industry 4.0 ...
© 2020 Elsevier Ltd Most available 3D biofabrication technologies rely on single-component depositio...
In biofabrication, researchers aim to produce three-dimensional (3D) constructs for the regeneration...
Most available 3D biofabrication technologies rely on single-component deposition methods, such as i...
Most available 3D biofabrication technologies rely on single-component deposition methods, such as i...
The ability to test large arrays of cell and biomaterial combinations in 3D environments is still ra...
The lack of tissue regeneration after trauma, degenerative diseases and other pathologies is a highl...
Biofabrication, specifically 3D-Bioprinting, has the potential to disruptively impact a wide range o...
Human Robot Collaboration (HRC) have proved to be effective if compared to traditional hybrid automa...
The current focus in the field of life science is the use of tissue engineering scaffolds to repair ...
The goal of scaffold-based tissue engineering is to create synthetic replacements for natural tissue...
Introduction Tissue engineering (TE) is a multidisciplinary field that combines the principles of en...