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首页> 外文期刊>Journal of Laboratory Automation >Sample Acquisition and Control On-Chip Microfluidic Sample Preparation
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Sample Acquisition and Control On-Chip Microfluidic Sample Preparation

机译:样品采集和控制芯片上微流控样品制备

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Microfluidic flow conditions allow the design of highly effective, yet simple devices for on-chip sample preparation and cleanup. Over the past few years, Micronics has developed a number of novel microfluidic structures that are compatible with complex samples such as whole blood or contaminated environmental fluids. The H-Filter is a technology based on the parallel laminar flow of two or more miscible streams in contact with each other. Such streams do not mix, but chemicals contained in these streams can diffuse from one stream into the other, with smaller molecules diffusing faster than larger ones. This principle can be used, for example, to remove salt from a solution containing DNA, or to extract smaller molecules from whole blood. The T-Sensor is based on the same laminar flow diffusion principle, but combines sample preparation with self-calibration and detection. These devices can be used not only in stand-alone research and point-of-use testing applications, but they can also be integrated, as sample preparation modules, into existing laboratory systems.
机译:微流体流动条件允许设计高效,简单的设备来进行片上样品制备和净化。在过去的几年中,Micronics开发了许多新颖的微流体结构,这些结构与复杂的样本(例如全血或受污染的环境流体)兼容。 H型过滤器是一项基于两个或更多个彼此接触的可混溶流的平行层流的技术。这样的流不会混合,但是这些流中包含的化学物质可以从一种流扩散到另一种流中,较小的分子比较大的分子扩散得更快。例如,可以使用该原理从含有DNA的溶液中去除盐分,或从全血中提取较小的分子。 T型传感器基于相同的层流扩散原理,但将样品制备与自校准和检测结合在一起。这些设备不仅可以用于独立的研究和使用点测试应用中,还可以作为样品制备模块集成到现有的实验室系统中。

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