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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >One-dimensional acoustic standing waves in rectangular channels for flow cytometry
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One-dimensional acoustic standing waves in rectangular channels for flow cytometry

机译:矩形通道中的一维声驻波,用于流式细胞仪

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摘要

Flow cytometry has become a powerful analytical tool for applications ranging from blood diagnostics to high throughput screening of molecular assemblies on microsphere arrays. However, instrument size, expense, throughput, and consumable use limit its use in resource poor areas of the world, as a component in environmental monitoring, and for detection of very rare cell populations. For these reasons, new technologies to improve the size and cost-to-performance ratio of flow cytometry are required. One such technology is the use of acoustic standing waves that efficiently concentrate cells and particles to the center of flow channels for analysis. The simplest form of this method uses one-dimensional acoustic standing waves to focus particles in rectangular channels. We have developed one-dimensional acoustic focusing flow channels that can be fabricated in simple capillary devices or easily microfabricated using photolithography and deep reactive ion etching. Image and video analysis demonstrates that these channels precisely focus single flowing streams of particles and cells for traditional flow cytometry analysis. Additionally, use of standing waves with increasing harmonics and in parallel microfabricated channels is shown to effectively create many parallel focused streams. Furthermore, we present the fabrication of an inexpensive optical platform for flow cytometry in rectangular channels and use of the system to provide precise analysis. The simplicity and low-cost of the acoustic focusing devices developed here promise to be effective for flow cytometers that have reduced size, cost, and consumable use. Finally, the straightforward path to parallel flow streams using one-dimensional multinode acoustic focusing, indicates that simple acoustic focusing in rectangular channels may also have a prominent role in high-throughput flow cytometry.
机译:流式细胞术已成为一种强大的分析工具,其应用范围从血液诊断到微球阵列上分子组件的高通量筛选。但是,仪器的尺寸,费用,通量和消耗品的使用限制了它在世界资源贫乏地区的使用,作为环境监测的组成部分以及非常稀有细胞群体的检测。由于这些原因,需要改进流式细胞术的尺寸和性价比的新技术。一种这样的技术是使用声驻波,该声驻波有效地将细胞和粒子集中到流动通道的中心进行分析。此方法的最简单形式是使用一维声驻波将粒子聚焦在矩形通道中。我们已经开发出一维的声聚焦流动通道,可以在简单的毛细管装置中制造,也可以使用光刻和深反应离子蚀刻轻松地进行微制造。图像和视频分析表明,这些通道可精确聚焦单个颗粒和细胞流,以进行传统的流式细胞仪分析。另外,显示出在谐波和并联微型加工通道中使用具有增加谐波的驻波可有效创建许多并联聚焦流。此外,我们介绍了一种廉价的光学平台,用于矩形通道中的流式细胞仪的制造,并使用该系统提供了精确的分析。此处开发的声学聚焦设备的简单性和低成本有望对尺寸,成本和消耗品减少的流式细胞仪有效。最后,使用一维多节点声聚焦到平行流的直接路径表明,矩形通道中的简单声聚焦在高通量流式细胞仪中也可能起着重要作用。

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