We have developed a three-dimensional (3D) bioprinting system capable of multimaterial and multiscale deposition to enable the next generation of "bottom-up" tissue engineering. This area of research resides at the interface of engineering and life sciences. As such, it entails the design and implementation of diverse elements: a novel hydrogelbased bioink, a 3D bioprinter, automation software, and mammalian cell culture. Our bioprinter has three components uniquely combined into a comprehensive tool: syringe pumps connected to a selector valve that allow precise application of up to five different materials with varying viscosities and chemistries, a high velocity/high-precision x-y-z stage to accommodate the most rapid speeds allowable by...
3D bioprinting involves the combination of 3D printing technologies with cells, growth factors and b...
The fabrication of 3D constructs using 3D bioprinting techniques aims ...
3D bioprinting is an addictive manufacture method for 3D scaffold engineering used as a 3D template...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
Bioprinting is an emerging technology with various applications in making functional tissue construc...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
A new bioprinting method is reported for fabricating 3D tissue constructs replete with vasculature, ...
Bioprinting is an emerging technology with various applications in making functional tissue construc...
3D printing, an additive manufacturing based technology for precise 3D construction, is currently wi...
In recent years, three-dimensional (3D) printers have revolutionized the process of prototyping and ...
The ability to bioengineer three-dimensional (3D) tissues is a potentially powerful approach to trea...
Three-dimensional (3D) bioprinting allows the production of artificial 3D cellular microenvironments...
Biological printing (bioprinting) is a process used by tissue engineers to efficiently produce livin...
3D bioprinting involves the combination of 3D printing technologies with cells, growth factors and b...
The fabrication of 3D constructs using 3D bioprinting techniques aims ...
3D bioprinting is an addictive manufacture method for 3D scaffold engineering used as a 3D template...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
Bioprinting is an emerging technology with various applications in making functional tissue construc...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
A new bioprinting method is reported for fabricating 3D tissue constructs replete with vasculature, ...
Bioprinting is an emerging technology with various applications in making functional tissue construc...
3D printing, an additive manufacturing based technology for precise 3D construction, is currently wi...
In recent years, three-dimensional (3D) printers have revolutionized the process of prototyping and ...
The ability to bioengineer three-dimensional (3D) tissues is a potentially powerful approach to trea...
Three-dimensional (3D) bioprinting allows the production of artificial 3D cellular microenvironments...
Biological printing (bioprinting) is a process used by tissue engineers to efficiently produce livin...
3D bioprinting involves the combination of 3D printing technologies with cells, growth factors and b...
The fabrication of 3D constructs using 3D bioprinting techniques aims ...
3D bioprinting is an addictive manufacture method for 3D scaffold engineering used as a 3D template...