Bio-hybrid technologies aim to replicate the unique capabilities of biological systems that could surpass advanced artificial technologies. Soft bio-hybrid robots consist of synthetic and living materials and have the potential to self-assemble, regenerate, work autonomously, and interact safely with other species and the environment. Cells require a sufficient exchange of nutrients and gases, which is guaranteed by convection and diffusive transport through liquid media. The functional development and long-term survival of biological tissues in vitro can be improved by dynamic flow culture, but only microfluidic flow control can develop tissue with fine structuring and regulation at the microscale. Full control of tissue growth at the micr...
The poor correlation between in vitro and in vivo studies emphasises the lack of a reliable methodol...
Vascular tissue engineering aims to restore blood flow by seeding artificial tubular scaffolds with ...
Vascular tissue engineering aims to restore blood flow by seeding artificial tubular scaffolds with ...
The relatively recent development of microfluidic systems with wide-ranging capabilities for generat...
The next robotics frontier will be led by biohybrids. Capable biohybrid robots require microfluidics...
3D cell cultures have been investigated in the tissue engineering and regenerative medicine domains ...
While previous works on cell-based devices for integrated chemical systems have focused on exploitin...
<p>Skeletal muscle is a scalable actuator system used throughout nature from the millimeter to meter...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
An introductory overview of the use of microfluidic devices for tissue engineering is presented. Aft...
An introductory overview of the use of microfluidic devices for tissue engineering is presented. Aft...
Soft robotics is an emerging discipline that employs soft flexible materials such as fluids, gels an...
Through evolution, nature has defined materials in a highly organized and hierarchical fashion, with...
Through evolution, nature has defined materials in a highly organized and hierarchical fashion, with...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
The poor correlation between in vitro and in vivo studies emphasises the lack of a reliable methodol...
Vascular tissue engineering aims to restore blood flow by seeding artificial tubular scaffolds with ...
Vascular tissue engineering aims to restore blood flow by seeding artificial tubular scaffolds with ...
The relatively recent development of microfluidic systems with wide-ranging capabilities for generat...
The next robotics frontier will be led by biohybrids. Capable biohybrid robots require microfluidics...
3D cell cultures have been investigated in the tissue engineering and regenerative medicine domains ...
While previous works on cell-based devices for integrated chemical systems have focused on exploitin...
<p>Skeletal muscle is a scalable actuator system used throughout nature from the millimeter to meter...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
An introductory overview of the use of microfluidic devices for tissue engineering is presented. Aft...
An introductory overview of the use of microfluidic devices for tissue engineering is presented. Aft...
Soft robotics is an emerging discipline that employs soft flexible materials such as fluids, gels an...
Through evolution, nature has defined materials in a highly organized and hierarchical fashion, with...
Through evolution, nature has defined materials in a highly organized and hierarchical fashion, with...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
The poor correlation between in vitro and in vivo studies emphasises the lack of a reliable methodol...
Vascular tissue engineering aims to restore blood flow by seeding artificial tubular scaffolds with ...
Vascular tissue engineering aims to restore blood flow by seeding artificial tubular scaffolds with ...