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Multispectral imaging of ore minerals in optical microscopy

机译:光学显微镜下矿石矿物的多光谱成像

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Multispectral imaging of ore minerals under the microscope is a logical extension of quantitative colour analysis and microspectrophotometric analysis of minerals. This paper describes, step by step, how the proper calibration of a scientific video camera can be performed in order to obtain precise reflectance measurements at each pixel within the field of view. After having reviewed the different sources of noise and aberration, practical formulae are presented that allow for the acquisition of a set of images at different wavelengths in the visible spectrum. The advantage of using a multispectral image acquisition system based on narrow bandwidth (10 nm) interference filters is discussed and quantitatively compared to colour imaging using tri-stimulus (red, green, blue) filters. Images taken from major sulphide parageneses are shown as examples of well contrasted multispectral images. Finally, the potential for automatic identification of ore minerals is discussed with reference to supervised multivariate image classification algorithms similar to those used in remote sensing. Additional comments on extending the principles for handling optical anisotropy and developing a multiradial imaging system are made.
机译:显微镜下矿石矿物的多光谱成像是矿物定量颜色分析和显微分光光度分析的逻辑扩展。本文逐步介绍了如何对科学摄像机进行适当的校准,以便在视场内的每个像素处获得精确的反射率测量结果。在回顾了噪声和像差的不同来源之后,提出了实用的公式,这些公式允许获取可见光谱中不同波长的一组图像。讨论了使用基于窄带宽(10 nm)干涉滤光片的多光谱图像采集系统的优势,并将其与使用三刺激(红,绿,蓝)滤光片的彩色成像进行了定量比较。从主要硫化物共生体拍摄的图像显示为高对比度多光谱图像的示例。最后,参考类似于遥感中使用的监督多元图像分类算法,讨论了自动识别矿石矿物的潜力。关于扩展用于处理光学各向异性的原理和开发多辐射成像系统的其他评论。

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