An integrated and mixed technology LOC hydrodynamic focuser for cell counting application

A. Laki, Ismael Rattalino, A. Sanginario, N. Piacentini, K. Iván, D. Lăpădatu, J. Taylor, D. Demarchi, P. Civera
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引用次数: 3

Abstract

In our project a standard microfluidic analyzer background system and its construction steps were developed to analyze biologic fluids. The obtained micro-Total-Analysis-System (μTAS) is based on the integration of different microflu-idic systems. Each part follows well-defined rules to make the integration of the large-scale production microchip technology with the cheap polymer support system possible. The compiled system is based on the SensoNor glass/silicon/glass multilayer technology [1] and ThinXXS plastic slide technology, which are made from low cost materials, easily producible in large-scale and in the same time biocompatible. In this project hydrodynamic focusers were designed to sort and analyze particles and cells in one continuous focused line, in a 50 μm wide channel. The advantage of this Lab-On-a-Chip (LOC) structure is the easy interfaceability with electrodes and optical systems. The designed microchannels contain electrodes for electrical characterization and because of the anodic bonding process it is possible to observe the channel with an upright microscope [2]. With these two fundamental methods our system is able to analyze and measure any biological liquid, which contain less than 10 μm size particles or cells, and count the number of morphologically well-separated different elements in the focused liquid flow with image processing algorithms.
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一种用于细胞计数应用的集成和混合技术LOC流体动力聚焦器
在本课题中,我们开发了一个标准的微流体分析仪后台系统及其构建步骤,用于分析生物流体。基于不同微流控系统的集成,得到了微全流分析系统(μTAS)。每个部分都遵循明确的规则,使大规模生产的微芯片技术与廉价的聚合物支撑系统的集成成为可能。编译系统基于SensoNor玻璃/硅/玻璃多层技术[1]和ThinXXS塑料载玻片技术,采用低成本材料制成,易于大规模生产,同时具有生物相容性。在这个项目中,流体动力聚焦器被设计用于在一个50 μm宽的通道中对一个连续聚焦线中的颗粒和细胞进行分类和分析。这种芯片实验室(LOC)结构的优点是易于与电极和光学系统接口。所设计的微通道包含用于电学表征的电极,并且由于阳极键合过程,可以用直立显微镜观察通道[2]。通过这两种基本方法,我们的系统能够分析和测量任何含有小于10 μm大小的颗粒或细胞的生物液体,并通过图像处理算法计算聚焦液体流中形态分离良好的不同元素的数量。
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