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Integrated CMOS optical sensor for fluorescence detection and contact imaging.

机译:集成的CMOS光学传感器,用于荧光检测和接触成像。

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摘要

The growing interest in analyzing single cells or even single molecules has inspired a great deal of research and engineering in developing low cost, high throughput, and high sensitivity biosensor systems. This work focuses on integrated CMOS optical sensors for fluorescence detection and contact imaging.; Among many relevant techniques available for biological testing and molecular detection, fluorescence-based methods generally achieve the highest sensitivity and are the most widely used. We describe several contributions towards incorporating fluorescence sensing into low cost, miniaturized platforms. We first investigated the spectral responsivities of photodetectors available in a commercially available CMOS process in order to assess the need for additional optical filtering. Further, we developed a low noise photodetector in a standard CMOS process. Both the reset noise and readout noise of the sensor were significantly improved compared to a conventional pixel structure widely used as a CMOS image sensor. The sensor successfully detected nanomolar concentrations of fluorescence indicator, 2 orders of magnitude less than the recommended assay concentration for commercial fluorescence detection devices.; Miniaturized high-throughput biosensor systems for single cell characterization require the ability to steer microscale biological cells to distinct locations without requiring macroscale imaging systems. One simple and promising approach to building a miniaturized imaging system with microscale resolution is to directly couple the sensor array with the sample of interest. To investigate this approach, we explored the theoretical limitations of contact imaging with the aid of an optics simulator. Experimental results confirmed the theoretical predictions. Two possible applications of contact imaging were also demonstrated. We further describe a contact image sensor with improved spatial resolution. A novel pixel structure is developed for suppressing increased dark current in a commercially available 0.18 mum CMOS process. Simple on-chip processing was implemented to alleviate the need for subsequent image processing for locating small particles. The original contributions of this thesis include: (1) Low noise active pixel sensor (APS); (2) Demonstration of integrated fluorescence sensing; (3) Simulation of contact imaging; (4) Experimental validation and demonstration of contact imaging applications; (5) Low dark current APS pixel; (6) Architecture for threshold generation and on-chip particle detection.
机译:对分析单个细胞甚至单个分子的兴趣日益浓厚,这激发了开发低成本,高通量和高灵敏度生物传感器系统的大量研究和工程。这项工作集中在用于荧光检测和接触成像的集成CMOS光学传感器上。在可用于生物学测试和分子检测的许多相关技术中,基于荧光的方法通常可获得最高的灵敏度,并且是使用最广泛的方法。我们描述了将荧光传感整合到低成本,小型化平台中的几种贡献。我们首先研究了在商用CMOS工艺中可用的光电探测器的光谱响应,以评估是否需要额外的光学滤波。此外,我们开发了采用标准CMOS工艺的低噪声光电探测器。与广泛用作CMOS图像传感器的常规像素结构相比,传感器的复位噪声和读出噪声均得到了显着改善。该传感器成功检测出纳摩尔浓度的荧光指示剂,比商用荧光检测设备推荐的检测浓度低2个数量级。用于单细胞表征的小型化高通量生物传感器系统需要能够将微尺度生物细胞引导至不同位置而无需宏观成像系统。建立具有微型分辨率的小型化成像系统的一种简单且有希望的方法是将传感器阵列与目标样品直接耦合。为了研究这种方法,我们借助光学模拟器探索了接触成像的理论局限性。实验结果证实了理论预测。还展示了接触成像的两种可能的应用。我们进一步描述了具有改进的空间分辨率的接触式图像传感器。开发了一种新颖的像素结构,以抑制在市售的0.18μmCMOS工艺中增加的暗电流。实现了简单的片上处理,以减轻对后续定位小颗粒的图像处理的需求。本文的主要贡献包括:(1)低噪声有源像素传感器(APS); (2)演示集成荧光传感; (3)接触成像仿真; (4)接触成像应用的实验验证和演示; (5)低暗电流APS像素; (6)用于阈值生成和片上粒子检测的体系结构。

著录项

  • 作者

    Ji, Honghao.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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