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使用色调、饱和度、值颜色空间的色调参数作为双色调光学传感器的定量分析参数。

Use of the hue parameter of the hue, saturation, value color space as a quantitative analytical parameter for bitonal optical sensors.

机构信息

Department of Chemistry, The University of Portland, Portland, Oregon 97203, USA.

出版信息

Anal Chem. 2010 Jan 15;82(2):531-42. doi: 10.1021/ac901753c.

Abstract

The hue or H component of the hue, saturation, value (HSV) color space has been studied as a quantitative analytical parameter for bitonal optical sensors. The robust nature of this parameter provides superior precision for the measurement of sensors which change colors with the speciation of some indicator molecule. This parameter has been compared to red, green, blue (RGB) intensity and RGB absorbance along with differences and ratios of both intensity and absorbance and has been demonstrated to be 2 to 3 times superior. The H value maintains this superior precision with variations in indicator concentration, membrane thickness, detector spectral responsivity, and illumination. Because this parameter is stable, simple to calculate, easily obtained from commercial devices such as scanners and digital cameras, continuous over the entire color gamut, and bound between values of 0 and 1, it shows great promise for use in a variety of sensing applications including imaging, automated analysis, pharmaceutical sensing, lab-on-a-chip devices, and quality control applications.

摘要

HSV 色彩空间的色调或 H 分量已被研究为双色调光学传感器的定量分析参数。该参数具有强大的稳健性,可为测量某些指示剂分子形态变化导致颜色变化的传感器提供更高的精度。该参数已与红色、绿色、蓝色(RGB)强度和 RGB 吸光度进行了比较,以及强度和吸光度的差异和比值,结果表明其具有 2 到 3 倍的优越性。该 H 值在指示剂浓度、膜厚度、探测器光谱响应和照明的变化下保持了这种优越的精度。由于该参数稳定、易于计算、易于从扫描仪和数字相机等商业设备中获得、在整个色域内连续且介于 0 和 1 之间,因此在各种传感应用中具有很大的应用前景,包括成像、自动化分析、药物传感、芯片实验室设备和质量控制应用。

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