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Living Matter Observations with a Novel Hyperspectral Supercontinuum Confocal Microscope for VIS to Near-IR Reflectance Spectroscopy

机译:新型高光谱超连续谱共聚焦显微镜用于VIS到近红外反射光谱的活物质观察

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摘要

A broad range hyper-spectroscopic microscope fed by a supercontinuum laser source and equipped with an almost achromatic optical layout is illustrated with detailed explanations of the design, implementation and data. The real novelty of this instrument, a confocal spectroscopic microscope capable of recording high resolution reflectance data in the VIS-IR spectral range from about 500 nm to 2.5 mu m wavelengths, is the possibility of acquiring spectral data at every physical point as defined by lateral coordinates, X and Y, as well as at a depth coordinate, Z, as obtained by the confocal optical sectioning advantage. With this apparatus we collect each single scanning point as a whole spectrum by combining two linear spectral detector arrays, one CCD for the visible range, and one InGaAs infrared array, simultaneously available at the sensor output channel of the home made instrument. This microscope has been developed for biomedical analysis of human skin and other similar applications. Results are shown illustrating the technical performances of the instrument and the capability in extracting information about the composition and the structure of different parts or compartments in biological samples as well as in solid statematter. A complete spectroscopic fingerprinting of samples at microscopic level is shown possible by using statistical analysis on raw data or analytical reflectance models based on Abeles matrix transfer methods.
机译:图示了由超连续谱激光源馈送并配备了几乎消色差的光学布局的大范围高光谱显微镜,并对设计,实现和数据进行了详细说明。该仪器的真正新颖之处在于,它能够在大约500 nm至2.5μm波长的VIS-IR光谱范围内记录高分辨率反射率数据,它有可能在由横向定义的每个物理点上获取光谱数据通过共焦光学切片优势获得的坐标X和Y以及深度坐标Z。通过这种仪器,我们将两个线性光谱检测器阵列,一个可见光范围的CCD和一个InGaAs红外阵列组合在一起,将每个单个扫描点收集为整个光谱,这两个光谱在家用仪器的传感器输出通道上同时可用。该显微镜已开发用于人体皮肤和其他类似应用的生物医学分析。显示的结果说明了该仪器的技术性能以及提取有关生物样品以及固态物质中不同部分或部分的组成和结构的信息的能力。通过对原始数据进行统计分析或基于阿贝尔斯矩阵转移方法的分析反射率模型,可以显示出样品在微观水平上的完整光谱指纹图谱。

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