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Total internal reflection-based biochip utilizing a polymer-filled cavity with a micromirror sidewall

机译:基于全内反射的生物芯片,利用带有微镜侧壁的聚合物填充腔

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摘要

A total internal reflection (TIR)-based biochip utilizing a polymer-filled cavity with a micromirror sidewall has been designed and fabricated. The implementation of the micromirror sidewall cavity facilitates precise alignment of the excitation light beam into the system. The incident angle of illumination can be easily modified by selecting polymers of different indices of refraction while optical losses are minimized. The design enables the hybrid, vertical integration of a laser diode and a CCD camera, resulting in a compact optical system. Brownian motion of fluorescent microspheres and real-time photobleaching of rhodamine 6G molecules is demonstrated. The proposed TIR-based chip simplifies current TIR optical configurations and could potentially be used as an optical-microfluidic platform for an integrated lab-on-a-chip microsystem.
机译:已经设计和制造了一种基于全内反射(TIR)的生物芯片,该芯片利用了填充有聚合物的空腔并带有微镜侧壁。微镜侧壁腔的实施有助于激发光束精确对准系统。通过选择具有不同折射率的聚合物,同时使光损耗最小化,可以轻松地改变照明的入射角。该设计实现了激光二极管和CCD摄像机的垂直混合混合,从而形成了紧凑的光学系统。荧光微球的布朗运动和罗丹明6G分子的实时光漂白得到了证明。拟议中的基于TIR的芯片简化了当前的TIR光学配置,并有可能用作集成的芯片实验室微系统的光学微流体平台。

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