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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Fully integrated microfluidic separations systems for biochemical analysis
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Fully integrated microfluidic separations systems for biochemical analysis

机译:完全集成的微流体分离系统,用于生化分析

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Over the past decade a tremendous amount of research has been performed using microfluidic analytical devices to detect over 200 different chemical species. Most of this work has involved substantial integration of fluid manipulation components such as separation channels, valves, and filters. This level of integration has enabled complex sample processing on miniscule sample volumes. Such devices have also demonstrated high throughput, sensitivity, and separation performance. Although the miniaturization of fluidics has been highly valuable, these devices typically rely on conventional ancillary equipment such as power supplies, detection systems, and pumps for operation. This auxiliary equipment prevents the full realization of a "lab-on-a-chip" device with complete portability, autonomous operation, and low cost. Integration and/or miniaturization of ancillary components would dramatically increase the capability and impact of microfluidic separations systems. This review describes recent efforts to incorporate auxiliary equipment either as miniaturized plug-in modules or directly fabricated into the microfluidic device. (c) 2007 Elsevier B.V. All rights reserved.
机译:在过去的十年中,使用微流体分析设备进行了大量研究,以检测200多种不同的化学物种。大部分工作涉及流体操纵组件(例如分离通道,阀门和过滤器)的充分集成。如此高的集成度可以在很小的样品量上进行复杂的样品处理。此类设备还显示出高通量,灵敏度和分离性能。尽管流体学的小型化非常有价值,但是这些设备通常依赖于常规辅助设备,例如电源,检测系统和泵进行操作。这种辅助设备妨碍了具有完全可移植性,自主操作和低成本的“片上实验室”设备的全面实现。辅助部件的集成和/或小型化将显着提高微流分离系统的功能和影响。这篇综述描述了近期将辅助设备作为小型插入式模块或直接制造到微流体设备中的努力。 (c)2007 Elsevier B.V.保留所有权利。

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