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Fluorescent-Based Temperature Measurement with Simple Compensation of Photo-Degradation Using Hydrogel-Tool and Color Space Conversion

机译:基于荧光的温度测量,使用水凝胶工具简单补偿光降解和色彩空间转换

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摘要

We developed a method to obtain stable and long-lifetime temperature measurements using a fluorescence micromeasurement system. A hydrogel tool containing nano-semiconductor quantum dots (Q-dots) was developed as a fluorescent temperature indicator. We used image processing to convert RGB information to other color information to compensate for photodegradation. The temperature was calibrated using the hydrogel tool in several color spaces, including RGB (R: red, G: green, B: blue), HSV (H: hue, S: saturation, V: value (brightness)), and YCrCb (Y: brightness, Cr: red color difference, Cb: blue color difference). The calibration results showed that R, G, B, Y, and Cr decreased monotonically with increasing temperature, whereas H and Cb did not decrease monotonically. The photodegradation analysis showed that Cr was robust against the brightness fluctuation; however, R, G, and B strongly affected the brightness fluctuation because these values included the brightness information. These results show that temperature measurements based on Cr values are suitable to compensate for photodegradation and have a sensitivity of -1.3%/K and an accuracy of 0.3 K. These values are the same as those obtained using the fluorescence intensity method.
机译:我们开发了一种使用荧光显微测量系统获得稳定且使用寿命长的温度测量值的方法。开发了包含纳米半导体量子点(Q点)的水凝胶工具作为荧光温度指示剂。我们使用图像处理将RGB信息转换为其他颜色信息,以补偿光降解。使用水凝胶工具在几个颜色空间中校准温度,包括RGB(R:红色,G:绿色,B:蓝色),HSV(H:色相,S:饱和度,V:值(亮度))和YCrCb( Y:亮度,Cr:红色差,Cb:蓝色差)。校准结果显示,R,G,B,Y和Cr随着温度升高而单调降低,而H和Cb并未单调降低。光降解分析表明,Cr具有抵抗亮度波动的作用。但是,R,G和B强烈影响亮度波动,因为这些值包括亮度信息。这些结果表明,基于Cr值的温度测量值适合补偿光降解,并且灵敏度为-1.3%/ K,精度为0.3K。这些值与使用荧光强度方法获得的值相同。

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