Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that exceeds that of typical extrusion-based bioprinting approaches, allowing to better mimic the complex architecture of biological tissues. Additionally, lithographic printing via digital light processing (DLP) enables fabrication of free-form lattice and patterned structures which cannot be easily produced with other 3D printing approaches. While significant progress has been dedicated to the development of cell-laden bioinks for extrusion-based bioprinting, less attention has been directed towards the development of cyto-compatible bio-resins and their application in lithography-based biofabrication, limiting the advancement of this promising te...
Stereolithography-based bioprinting has been considered as a promising solution to generate cell-lad...
Due to the fast pace advancements in 3D printing technologies, it is now possible to bring to life t...
Extrusion-based three-dimensional bioprinting relies on bioinks engineered to combine viscoelastic p...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
The natural tissues are architecturally complex and heterogenous in nature and comprise of a dense v...
Thanks to their unique advantages, additive manufacturing technologies are revolutionizing almost al...
The synergy of hydrogel processing and 3D printing technologies has paved the way for the developmen...
Three-dimensional (3D) bioprinting based on traditional 3D printing is an emerging technology that i...
Bioprinting has recently emerged as a promising fabrication technique for developing 3D biologically...
Biofabrication technologies, including stereolithography and extrusion-based printing, are revolutio...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
3D printing, an additive manufacturing based technology for precise 3D construction, is currently wi...
Biofabrication via light-based 3D printing offers superior resolution and ability to generate free-f...
Recent advances in 3D bioprinting have transformed the tissue engineering landscape by enabling the ...
Stereolithography-based bioprinting has been considered as a promising solution to generate cell-lad...
Due to the fast pace advancements in 3D printing technologies, it is now possible to bring to life t...
Extrusion-based three-dimensional bioprinting relies on bioinks engineered to combine viscoelastic p...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
The natural tissues are architecturally complex and heterogenous in nature and comprise of a dense v...
Thanks to their unique advantages, additive manufacturing technologies are revolutionizing almost al...
The synergy of hydrogel processing and 3D printing technologies has paved the way for the developmen...
Three-dimensional (3D) bioprinting based on traditional 3D printing is an emerging technology that i...
Bioprinting has recently emerged as a promising fabrication technique for developing 3D biologically...
Biofabrication technologies, including stereolithography and extrusion-based printing, are revolutio...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
3D printing, an additive manufacturing based technology for precise 3D construction, is currently wi...
Biofabrication via light-based 3D printing offers superior resolution and ability to generate free-f...
Recent advances in 3D bioprinting have transformed the tissue engineering landscape by enabling the ...
Stereolithography-based bioprinting has been considered as a promising solution to generate cell-lad...
Due to the fast pace advancements in 3D printing technologies, it is now possible to bring to life t...
Extrusion-based three-dimensional bioprinting relies on bioinks engineered to combine viscoelastic p...