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Fluorescence Detection of a Minute Particle Using Resin-Based Optical Total Analysis Systems Having a High Aspect Ratio Light Waveguide Core

机译:使用具有高纵横比光波导芯的基于树脂的光学总分析系统对微小颗粒进行荧光检测

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A precise light waveguide combined total analysis system (TAS) is thought to be one of the most powerful functional elements needed to realize a "ubiquitous healthcare" system. In accordance with this concept, we have proposed a fundamental structure of detecting forward and side scattered light from small particles illuminating laser power through light waveguide formed in a thin resin layer. Based on this concept, we demonstrated its effectiveness of detecting both forward and side scattered light in in-plane direction (Fig.1) by using a trial-manufactured TAS chip. Acquiring further various physiological properties, it is necessary to illuminate them with smaller cross section size of cores of light waveguide, and furthermore, to construct fluorescence detecting systems.
机译:精确的光波导组合的总分析系统(TAS)被认为是实现“无处不在医疗保健”系统所需的最强大的功能元素之一。根据这一概念,我们提出了一种通过在薄树脂层中形成的光波导照射激光功率的小颗粒检测和侧散射光的基本结构。基于这一概念,我们通过使用试验制造的TAS芯片证明了检测面内方向上的正向和侧散射光(图1)的有效性。获取进一步的各种生理特性,有必要用较小的光波导芯的横截面尺寸较小,而且还需要构建荧光检测系统。

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