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Detection of Weak Absorption Changes from Molecular Events in Time-Resolved FT-IR Spectromicroscopy Measurements of Single Functional Cells

机译:在单个功能性细胞的时间分辨FT-IR光谱测量中检测分子事件引起的弱吸收变化

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The possibility of performing FT-IR spectromicroscopy experiments on individual living cells is the focus of considerable attention. Among the applications of interest, the obtainment of structural information in rapid measurements, with a time resolution of the minute or better, is a prized goal. In this work, we show that the use of synchrotron FT-IR spectromicroscopy allows one to extract weak spectral changes, of less than 10~(-3) au per minute, in the absorption spectrum of single rod cells following photostimulation. We also show that absorption changes are accompanied by other optical effects due to changes in the real part of the refractive index of the cell. The use of two-dimensional correlation spectroscopy allows us to assign bands to specific molecular chromophores and to extract weak spectral variations in the presence of a noisy background.
机译:在单个活细胞上进行FT-IR光谱显微镜实验的可能性是引起广泛关注的焦点。在感兴趣的应用中,以分钟或更短的时间分辨率在快速测量中获得结构信息是一个值得追求的目标。在这项工作中,我们表明使用同步加速器FT-IR光谱显微镜可以使光刺激后的单个杆细胞的吸收光谱中提取的微弱光谱变化(每分钟小于10〜(-3)au)。我们还表明,吸收变化伴随着其他光学效应,这归因于细胞折射率实部的变化。二维相关光谱的使用使我们可以将带分配给特定的分子发色团,并在存在嘈杂背景的情况下提取微弱的光谱变化。

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