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To this end a flow injection system was designed to focus on miniaturization with minimal reagent consumption.
By virtue of their compactness, long-term stability, minimal reagent consumption and robustness, miniaturized sequential injection instruments are well suited for automation of assays onboard research ships.
Therefore, the combination of EWOD digital microfluidic and electrochemical sensing system has successfully been demonstrated for rapid chemical analysis with minimal reagent consumption.
Some benefits of using microfluidics in cellular analyses include high-throughput screening, precise manipulation of the fluid flow, minimal reagent consumption and high sensitivity to small amounts of a sample.
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The flow system was designed with a set of solenoid micro-pumps to minimize reagent consumption and waste generation.
The flow system was designed with solenoid micro-pumps in order to minimize reagent consumption and waste generation.
The flow system was designed to focus on automation and miniaturization with minimal sample and reagent consumption by inexpensive instrumentation.
The minimization of reagent consumption and waste generation favors the development of a noteworthy system.
To improve the sampling rate, minimize the reagent consumption and generated wastes, an on-line configuration was designed.
When minimization of reagent consumption is key, this system will be preferred.
This system provides minimal reagents and sample consumption, eliminates discontinuous stages between samples processing reaching a simpler and faster Se analysis.
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