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Temperature measurement in microfluidic systems using atemperature-dependent fluorescent dye

机译:使用取决于温度的荧光染料在微流体系统中进行温度测量

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摘要

A technique is described for the measurement of fluid temperatures in microfluidic systems based on temperature-dependent fluorescence. The technique is easy to implement with a standard fluorescence microscope and CCD camera. In addition, the method can be used to measure fluid temperatures with micrometer spatial resolution and millisecond time resolution. The efficacy of the method is demonstrated by measuring temperature distributions resulting from Joule heating in a variety of microfluidic circuits that are electrokinetically pumped. With the equipment used for these measurements, fluid temperatures ranging from room temperature to 90 degreesC were measured with a precision ranging from 0.03 to 3.5 degreesC-dependent on the amount of signal averaging done. The spatial and temporal resolutions achieved were 1 mum and 33 ms, respectively.
机译:描述了一种用于基于温度依赖性荧光的微流体系统中的流体温度测量技术。使用标准的荧光显微镜和CCD相机很容易实现该技术。另外,该方法可以用于以微米空间分辨率和毫秒时间分辨率测量流体温度。通过测量由电动泵抽运的各种微流体回路中的焦耳加热产生的温度分布,证明了该方法的有效性。使用用于这些测量的设备,可以测量室温至90摄氏度范围内的流体温度,精度范围为0.03至3.5摄氏度,具体取决于信号平均量。达到的空间和时间分辨率分别为1 mum和33 ms。

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