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A multiplexing fiber optic microsensor system for monitoring spatially resolved oxygen patterns

机译:用于监视空间分辨的氧气模式的多路复用光纤微传感器系统

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摘要

Single channel luminescent oxygen-quenched optrodes and micro optrodes have been commercially available for over a decade. However, many field experiments in biological research require multiple oxygen sensors to collect large spatial datasets, or to monitor real time oxygen transport in various regions of interest. This paper demonstrates the design, validation, and application of a fiber optic oxygen microsensor system that is designed to conduct real-time measurements of multiple samples in field studies. The ten channel system was validated in laboratory conditions and then used to monitor spatially resolved, real time oxygen concentration in marine microbial mats, agricultural soil, and developing seeds. Sensor stability, drift, sensitivity, and response time were similar to a single channel commercial technology. The effects of temperature and salinity were analyzed and compared to a commercial micro optrode system (there was no statistical difference in performance between the two systems). In addition to the multiplexing capability, an advantage of the system developed here is the ability to map oxygen gradients in three dimensions. The multiplexing system is a minimally invasive tool for in vivo monitoring of form-function relationships with sub-millimeter spatial resolution.
机译:单通道发光的氧猝灭光极和微光极已经在商业上使用了十多年。但是,生物学研究中的许多现场实验都需要多个氧气传感器来收集大型空间数据集,或监视感兴趣的各个区域中的实时氧气传输。本文演示了光纤氧微传感器系统的设计,验证和应用,该系统旨在进行现场研究中多个样品的实时测量。十通道系统在实验室条件下得到验证,然后用于监测海洋微生物垫,农业土壤和发育中的种子中空间分辨的实时氧气浓度。传感器的稳定性,漂移,灵敏度和响应时间类似于单通道商业技术。分析了温度和盐度的影响,并将其与商用微电极系统进行了比较(两个系统之间的性能没有统计学差异)。除了多路复用功能外,此处开发的系统的一个优点是能够在三个维度上映射氧梯度。该多路复用系统是一种微创工具,用于体内监测具有亚毫米级空间分辨率的形式功能关系。

著录项

  • 来源
    《Sensors and Actuators 》 |2014年第6期| 71-79| 共9页
  • 作者单位

    Agricultural & Biological Engineering, University of Florida, USA;

    Department of Biology, University of Florida, USA;

    Department of Microbiology and Cell Sciences, University of Florida, USA,NASA-Kennedy Space Center, Space Life Sciences Laboratory, USA;

    Science Wares, Inc., USA;

    Enterprise Advisory Services, Inc. ESC-Team QNA, Kennedy Space Center, FL, USA;

    ESC-Team QNA, Kennedy Space Center, Florida, USA;

    ESC-Team QNA, Kennedy Space Center, Florida, USA;

    Agricultural & Biological Engineering, University of Florida, USA,Department of Food Engineering, Universidad del Valle, Colombia;

    Agricultural & Biological Engineering, University of Florida, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oxygen; multiplexing; Fiber optic; Lifetime; Frequency-modulated excitation;

    机译:氧;多路复用光纤;一生;调频激励;

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