This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy, biology, and tissue engineering. Design and fabrication of microfluidic systems are discussed with respect to specific biological concerns, such as biocompatibility and cell viability. Recent applications and developments on genetic analysis, cell culture, cell manipulation, biosensors, pathogen detection systems, diagnostic devices, high-throughput screening and biomaterial synthesis for tissue engineering are presented. The pros and cons of materials like polydimethylsiloxane (PDMS), polymethylmethacrylate (PMMA), polystyrene (PS), polycarbonate (PC), cyclic olefin copolymer (COC), glass, and silicon are discussed in terms of biocompatibi...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
Harnessing the ability to precisely and reproducibly actuate fluids and manipulate bioparticles such...
This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy...
This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy...
This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy...
This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy...
Microfluidic devices fabricated in poly(dimethylsiloxane) for biological studies This review describ...
Polymer-based microelectromechanical systems (MEMS) and devices are a rapidly expanding field with ...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
To complement the traditional silicon and glass-based microfluidic devices, polymer-based microdevic...
The objectives of the proposed research project are: To develop new pumping devices for chemical and...
To complement the traditional silicon and glass-based microfluidic devices, polymer-based microdevic...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
This research work focuses on the development of plastic microfabrication techniques, specifically e...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
Harnessing the ability to precisely and reproducibly actuate fluids and manipulate bioparticles such...
This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy...
This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy...
This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy...
This paper reviews microfluidic technologies with emphasis on applications in the fields of pharmacy...
Microfluidic devices fabricated in poly(dimethylsiloxane) for biological studies This review describ...
Polymer-based microelectromechanical systems (MEMS) and devices are a rapidly expanding field with ...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
To complement the traditional silicon and glass-based microfluidic devices, polymer-based microdevic...
The objectives of the proposed research project are: To develop new pumping devices for chemical and...
To complement the traditional silicon and glass-based microfluidic devices, polymer-based microdevic...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
This research work focuses on the development of plastic microfabrication techniques, specifically e...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
Polymers are sustainable and renewable materials that are in high demand due to their excellent prop...
Harnessing the ability to precisely and reproducibly actuate fluids and manipulate bioparticles such...