An introductory overview of the use of microfluidic devices for tissue engineering is presented. After a brief description of the background of tissue engineering, different application areas of microfluidic devices are examined. Among these are methods for patterning cells, topographical control over cells and tissues, and bioreactors. Examples where microfluidic devices have been employed are presented such as basal lamina, vascular tissue, liver, bone, cartilage and neurons. It is concluded that until today, microfluidic devices have not been used extensively in tissue engineering. Major contributions are expected in two areas. The first is growth of complex tissue, where microfluidic structures ensure a steady blood supply, thereby circ...
Bio-hybrid technologies aim to replicate the unique capabilities of biological systems that could su...
The relatively recent development of microfluidic systems with wide-ranging capabilities for generat...
Microfluidic technologies are emerging as an enabling tool for various applications in tissue engine...
An introductory overview of the use of microfluidic devices for tissue engineering is presented. Aft...
Recent advances in medicine and healthcare allow people to live longer, increasing the need for the ...
Recent advances in medicine and healthcare allow people to live longer, increasing the need for the ...
Microfluidics recently emerged with the potential to fulfill many technological gaps as they possess...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
Vascular cell biology is an area of research with great biomedical relevance. Vascular dysfunction i...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
Clinicians have made practical efforts for over 100 years in replacing damaged tissues and organs. H...
Over the last two decades, microfluidics has made significant contri-butions in cell biology resear...
Recent advances in medicine and healthcare allow people to live longer, increasing the need for the ...
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...
Bio-hybrid technologies aim to replicate the unique capabilities of biological systems that could su...
The relatively recent development of microfluidic systems with wide-ranging capabilities for generat...
Microfluidic technologies are emerging as an enabling tool for various applications in tissue engine...
An introductory overview of the use of microfluidic devices for tissue engineering is presented. Aft...
Recent advances in medicine and healthcare allow people to live longer, increasing the need for the ...
Recent advances in medicine and healthcare allow people to live longer, increasing the need for the ...
Microfluidics recently emerged with the potential to fulfill many technological gaps as they possess...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
Vascular cell biology is an area of research with great biomedical relevance. Vascular dysfunction i...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
Clinicians have made practical efforts for over 100 years in replacing damaged tissues and organs. H...
Over the last two decades, microfluidics has made significant contri-butions in cell biology resear...
Recent advances in medicine and healthcare allow people to live longer, increasing the need for the ...
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...
Bio-hybrid technologies aim to replicate the unique capabilities of biological systems that could su...
The relatively recent development of microfluidic systems with wide-ranging capabilities for generat...
Microfluidic technologies are emerging as an enabling tool for various applications in tissue engine...