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WHAT IS THE HISTORY OF MICROFLUIDICS?
Paper-based microfluidics - Wikipedia
The physics of microfluidics is a branch of fluid dynamics in which we consider fluids that are confined in structures of micrometer scales, i. At microscales, the dominant forces are different from those we experience at the macroscale, and flows typically exhibit properties that can be exploited in microfluidic devices. The velocity field of an incompressible fluid can be derived from the Navier-Stokes equations :. Boundary conditions also apply but are not shown here. These equations physically describe the space-time evolution of the velocity field of given fluid in a given domain. They are respectively obtained from simplified laws of conservation of momentum and mass, with the assumption that the fluid is incompressible density is constant over space and time and newtonian viscosity is uniform.
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Single-cell microfluidics for screening and testing new antibiotics
This collaboration has led to the development of platforms for microfluidics, micro- and nano-patterning, electronic biosensors, and neural implants. These technologies are not only developed to understand biological processes, but also pave the way for their application in sensor technology and diagnostics. Job Description: We aim to develop an in vitro electrochemical biosensor for the detection of target proteins indicative for medical diseases. However, on the way to achieve this aim, still several steps in the fabrication of the biosensor need to be optimized. One of those steps is the implementation of a microfluidic channel that facilitates the specific guiding of the biological sample solution to the detection electrodes, thereby reducing the measurement time.
Paper-based microfluidics are microfluidic devices that consist of a series of hydrophilic cellulose or nitrocellulose fibers that guide liquid from an inlet to a desired outlet by imbibition. The technology builds on the conventional lateral flow test which is capable of detecting many infections agents and chemical contaminants. The main advantage of this is that it is largely a passively controlled device unlike more complex microfluidic devices.
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