We developed a microfluidic flow control theory to provide design guidelines for multiplexed genetic diagnostic devices capable of sequential dispensing of samples into an array of reaction microchambers in a single operation.
In this paper, we report on the demonstration of a portable immunoassay system consisting of a small centrifugal microfluidic device driver (bento box) and a centrifugal microfluidic device made of polypropylene and fabricated by injection molding.
This paper describes the development of fully-automated synthesis systems for preparing and isolating various kinds of pharmaceutical
compounds. The systems are versatile, and are able to perform
most of the chemical reactions currently used in organic chemistry,
with the exception of hydrogenation which requires high pressure.
An additional benefit is the very user-friendly software.
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