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Integrated fluorescence detection system for lab on a chip devices.

机译:用于芯片实验室的集成荧光检测系统。

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摘要

This thesis focuses on the design of a versatile, portable, and cost-effective fluorescence detection system for LOC devices. Components that are widely available are used, such as LEDs for excitation and a microcontroller for processing. In addition, a photoresistor is tested for the feasibility of being used as a fluorescence detector, instead of the more commonly used photomultiplier tubes. The device also focuses on upgradeability and versatility, meaning that most of the major components can be replaced as long as power requirements remain unaffected. This allows for future additions to the device once they are available, as well as giving the user the power to choose which add-ons are needed since not all users may have the same requirements. The performance of the device after testing with fluorescein dyes and stained yeast cells indicate that it is capable of executing simple tasks, such as determining the presence and concentration of an analyte if given a sufficient amount. It also provided similar readings to commercial fluorescence analysers, which proves its ability to function as a fluorescence detector device.; The thesis also proposes a MEMS diffraction grating that can be used for wavelength tuning. By being able to selectively measure across a range of wavelengths, the capability of the device is increased. Examples include being able to detect multiple fluorescent emissions, which will complement the multicoloured excitation LED nicely. In addition, the device will not be limited to a predetermined set of filters. This effectively allows more fluorescent dyes to be used with the device since any wavelength in the visible range can be selectively filtered for. Simulations of the proposed diffraction grating were performed in ANSYS to confirm the validity of the calculated values. In addition, tests were performed on a slide fabricated with diffraction gratings using values as close to the calculated values as possible. All of the results indicate that there is great promise in the proposed diffraction grating design and that it should be further investigated.
机译:本文着重设计用于LOC设备的通用,便携式且经济高效的荧光检测系统。使用了广泛可用的组件,例如用于激励的LED和用于处理的微控制器。此外,还测试了光敏电阻器作为荧光检测器(而不是更常用的光电倍增管)的可行性。该设备还注重可升级性和多功能性,这意味着只要电源需求不受影响,大多数主要组件都可以更换。这样一来,将来就可以在设备上添加其他内容,并允许用户选择所需的附件,因为并非所有用户都可能有相同的要求。使用荧光素染料和染色的酵母细胞进行测试后,该设备的性能表明它能够执行简单的任务,例如确定分析物的存在和浓度(如果给予足够的量)。它还提供了与商用荧光分析仪相似的读数,证明了其具有作为荧光检测器装置的功能。本文还提出了一种可用于波长调谐的MEMS衍射光栅。通过能够选择性地测量一定范围的波长,可以提高设备的功能。例如,能够检测多种荧光发射,这将很好地补充多色激发LED。另外,该设备将不限于预定的过滤器集合。这可以有效地使更多的荧光染料与该设备一起使用,因为可见光范围内的任何波长都可以被选择性地过滤掉。在ANSYS中对提出的衍射光栅进行了仿真,以确认计算值的有效性。另外,在使用衍射光栅制造的载玻片上使用尽可能接近计算值的值进行测试。所有结果表明,提出的衍射光栅设计具有很大的前景,应进一步研究。

著录项

  • 作者

    Mo, Keith.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2007
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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