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Fourier Transform Infrared Spectrochemical Imaging: Review of Design and Applications with a Focal Plane Array and Multiple Beam Synchrotron Radiation Source

机译:傅里叶变换红外光谱化学成像:焦平面阵列和多束同步辐射源的设计和应用综述

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摘要

The beamline design, microscope specifications, and initial results from the new mid-infrared beamline (IRENI) are reviewed. Synchrotron-based spectrochemical imaging, as recently implemented at the Synchrotron Radiation Center in Stoughton, Wisconsin, demonstrates the new capability to achieve diffraction limited chemical imaging across the entire mid-infrared region, simultaneously, with high signal-to-noise ratio. IRENI extracts a large swath of radiation (320 hor. X 25 vert. mrads~(2)) to homogeneously illuminate a commercial infrared (IR) microscope equipped with an IR focal plane array (FPA) detector. Wide-field images are collected, in contrast to single-pixel imaging from the confocal geometry with raster scanning, commonly used at most synchrotron beamlines. IRENI rapidly generates high quality, high spatial resolution data. The relevant advantages (spatial oversampling, speed, sensitivity, and signal-to-noise ratio) are discussed in detail and demonstrated with examples from a variety of disciplines, including formalin-fixed and flash-frozen tissue samples, live cells, fixed cells, paint cross-sections, polymer fibers, and novel nanomaterials. The impact of Mie scattering corrections on this high quality data is shown, and first results with a grazing angle objective are presented, along with future enhancements and plans for implementation of similar, small-scale instruments.
机译:审查了光束线的设计,显微镜规格以及新的中红外光束线(IRENI)的初步结果。最近在威斯康星州斯托顿的同步辐射中心进行的基于同步加速器的光谱化学成像展示了一种新的功能,它可以同时在整个中红外区域实现衍射受限的化学成像,同时具有高信噪比。 IRENI提取大量辐射(320 hor X 25 verts mrads〜(2))以均匀地照射装有IR焦平面阵列(FPA)检测器的商用红外(IR)显微镜。与通常用于大多数同步加速器光束线的共聚焦几何图形通过光栅扫描进行单像素成像相比,可以收集宽视场图像。 IRENI快速生成高质量,高空间分辨率的数据。详细讨论了相关的优势(空间过采样,速度,灵敏度和信噪比),并通过来自多个学科的示例进行了演示,这些示例包括福尔马林固定和速冻组织样本,活细胞,固定细胞,油漆横截面,聚合物纤维和新型纳米材料。示出了米氏散射校正对该高质量数据的影响,并给出了具有掠角目标的首个结果,以及未来的增强功能和实施类似小型仪器的计划。

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