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Opportunities for Live Cell FT-Infrared Imaging: Macromolecule Identification with 2D and 3D Localization

机译:活细胞FT红外成像的机会:具有2D和3D本地化的大分子鉴定

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摘要

Infrared (IR) spectromicroscopy, or chemical imaging, is an evolving technique that is poised to make significant contributions in the fields of biology and medicine. Recent developments in sources, detectors, measurement techniques and speciman holders have now made diffraction-limited Fourier transform infrared (FTIR) imaging of cellular chemistry in living cells a reality. The availability of bright, broadband IR sources and large area, pixelated detectors facilitate live cell imaging, which requires rapid measurements using non-destructive probes. In this work, we review advances in the field of FTIR spectromicroscopy that have contributed to live-cell two and three-dimensional IR imaging, and discuss several key examples that highlight the utility of this technique for studying the structure and chemistry of living cells.
机译:红外(IR)光谱显微镜或化学成像是一项不断发展的技术,有望在生物学和医学领域做出重大贡献。来源,检测器,测量技术和标本架的最新发展现已使活细胞中细胞化学的衍射极限傅里叶变换红外(FTIR)成像成为现实。明亮的宽带红外光源和大面积像素化检测器的可用性促进了活细胞成像,这要求使用无损探头进行快速测量。在这项工作中,我们回顾了FTIR光谱学领域的进展,这些进展为活细胞二维和三维IR成像做出了贡献,并讨论了几个关键实例,突出了该技术在研究活细胞的结构和化学方面的实用性。

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