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Low Light CMOS Contact Imager with an Integrated Poly-Acrylic Emission Filter for Fluorescence Detection

机译:具有集成的丙烯酸发射滤光片的弱光CMOS接触式成像仪用于荧光检测

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摘要

This study presents the fabrication of a low cost poly-acrylic acid (PAA) based emission filter integrated with a low light CMOS contact imager for fluorescence detection. The process involves the use of PAA as an adhesive for the emission filter. The poly-acrylic solution was chosen due its optical transparent properties, adhesive properties, miscibility with polar protic solvents and most importantly its bio-compatibility with a biological environment. The emission filter, also known as an absorption filter, involves dissolving an absorbing specimen in a polar protic solvent and mixing it with the PAA to uniformly bond the absorbing specimen and harden the filter. The PAA is optically transparent in solid form and therefore does not contribute to the absorbance of light in the visible spectrum. Many combinations of absorbing specimen and polar protic solvents can be derived, yielding different filter characteristics in different parts of the spectrum. We report a specific combination as a first example of implementation of our technology. The filter reported has excitation in the green spectrum and emission in the red spectrum, utilizing the increased quantum efficiency of the photo sensitive sensor array. The thickness of the filter (20 μm) was chosen by calculating the desired SNR using Beer-Lambert’s law for liquids, Quantum Yield of the fluorophore and the Quantum Efficiency of the sensor array. The filters promising characteristics make it suitable for low light fluorescence detection. The filter was integrated with a fully functional low noise, low light CMOS contact imager and experimental results using fluorescence polystyrene micro-spheres are presented.
机译:这项研究提出了基于低成本聚丙烯酸(PAA)的发射滤光片的制造方法,该滤光片集成了用于荧光检测的低光CMOS接触式成像仪。该过程涉及使用PAA作为发射滤光片的粘合剂。选择聚丙烯酸溶液是由于其光学透明性,粘合性,与极性质子溶剂的混溶性,最重要的是其与生物环境的生物相容性。发射滤光片,也称为吸收滤光片,包括将吸收样品溶解在极性质子溶剂中,并将其与PAA混合,以使吸收样品均匀粘结并硬化滤光片。 PAA以固体形式是光学透明的,因此对可见光谱中的光的吸收没有贡献。可以得到吸收样品和极性质子溶剂的许多组合,从而在光谱的不同部分产生不同的过滤器特性。我们报告一种特定的组合,作为我们技术实施的第一个示例。报道的滤光片利用光敏传感器阵列提高的量子效率,在绿色光谱中具有激发,在红色光谱中具有发射。通过使用液体的比尔-朗伯定律,荧光团的量子产率和传感器阵列的量子效率来计算所需的SNR,从而选择滤波器的厚度(20μm)。该滤光片具有令人信服的特性,使其适用于弱光荧光检测。该滤波器与功能齐全的低噪声,低光CMOS接触式成像仪集成在一起,并给出了使用荧光聚苯乙烯微球的实验结果。

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