Microfluidic chip platforms for manipulating liquid volumes in the nanoliter range are slowly inching their way into mainstream genomic and proteomic research. The principal challenge faced by these technologies is the need for high-throughput processing of increasingly smaller volumes, with ever higher degrees of parallelization. Significant advances have been made over the past few years in addressing these needs through electrokinetic manipulation, vesicle encapsulation and mechanical valve approaches. These strategies allow levels of integration density and platform complexity that promise to make them into serious alternatives to current robotic systems
Microfluidics holds great promise to revolutionize various areas of biological engineering, such as ...
A universal goal of technological development is the enrichment of human life. The fast developments...
The rapid developments in biotechnology create a great demand for fluid handling systems on the nano...
Microfluidic chip platforms for manipulating liquid volumes in the nanoliter range are slowly inchin...
We have developed microfluidic chips for automating molecular biology processes such as gene ligatio...
Harnessing the ability to precisely and reproducibly actuate fluids and manipulate bioparticles such...
By incorporating pneumatic microvalves and special designed structures, a series of functional micro...
Investigating biological and synthetic nanoscopic species in liquids, at the ultimate resolution of ...
Cell culture is typically performed in Petri dishes, with a few million cells growing together, or i...
Synthetic biology is an interdisciplinary field that aims to engineer biological systems for useful ...
The rapid developments in biotechnology create a great demand for fluid handling systems on the nano...
This research concentrates on developing an integrated nanoliter fluidic device for chemical and bio...
International audienceDelivery and sampling nanoliter volumes of liquid can benefit new invasive sur...
In 2002, Thorsen et al. integrated thousands of micromechanical valves on a single microfluidic chip...
Micro/nanofluidics-based lab-on-a-chip devices have found extensive applications in the analysis of ...
Microfluidics holds great promise to revolutionize various areas of biological engineering, such as ...
A universal goal of technological development is the enrichment of human life. The fast developments...
The rapid developments in biotechnology create a great demand for fluid handling systems on the nano...
Microfluidic chip platforms for manipulating liquid volumes in the nanoliter range are slowly inchin...
We have developed microfluidic chips for automating molecular biology processes such as gene ligatio...
Harnessing the ability to precisely and reproducibly actuate fluids and manipulate bioparticles such...
By incorporating pneumatic microvalves and special designed structures, a series of functional micro...
Investigating biological and synthetic nanoscopic species in liquids, at the ultimate resolution of ...
Cell culture is typically performed in Petri dishes, with a few million cells growing together, or i...
Synthetic biology is an interdisciplinary field that aims to engineer biological systems for useful ...
The rapid developments in biotechnology create a great demand for fluid handling systems on the nano...
This research concentrates on developing an integrated nanoliter fluidic device for chemical and bio...
International audienceDelivery and sampling nanoliter volumes of liquid can benefit new invasive sur...
In 2002, Thorsen et al. integrated thousands of micromechanical valves on a single microfluidic chip...
Micro/nanofluidics-based lab-on-a-chip devices have found extensive applications in the analysis of ...
Microfluidics holds great promise to revolutionize various areas of biological engineering, such as ...
A universal goal of technological development is the enrichment of human life. The fast developments...
The rapid developments in biotechnology create a great demand for fluid handling systems on the nano...