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Highly sensitive vibrational imaging by fluorescence detection of mid-infrared photothermal effect

机译:通过荧光检测中红外光热效应的高敏感振动成像

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Mid-infrared photothermal (MIP) imaging is an emerging technique where a visible beam is deployed to sense the photothermal lensing effect induced by infrared absorption of molecules. This technology provides sub-micron spatial resolution defined by the visible probe beam. Yet, the photothermal lensing effect is a weak effect for most materials. For instance, the diffraction coefficient of poly (methyl methacrylate) changes around 0.1% per Kelvin. Thus, highly sensitive probes are desired to improve the detection sensitivity. Here, we report a fluorescence-enhanced mid-infrared photothermal (FE-MIP) microscope with high sensitivity. MIP microscopy uses a pump-probe strategy in which a mid-infrared light vibrationally excites a sample and a visible light probes the thermal effect. Instead of measuring the scattering modulated by mid-infrared absorption, we deploy thermal sensitive fluorescent dyes as the probe, and measure the modulated fluorescence intensity in both confocal mode and wide field mode. We demonstrate high imaging sensitivity and component specificity through fluorescence labeling.
机译:中红外光热(MIP)成像是一种新兴技术,其中展开可见光梁以感测通过红外吸收分子引起的光热镜头效应。该技术提供由可见探针光束定义的子微米空间分辨率。然而,光热镜头效果对大多数材料效果薄弱。例如,聚(甲基丙烯酸甲酯)的衍射系数约为每kelvin约0.1%。因此,期望高敏感的探针来改善检测灵敏度。在这里,我们报告了具有高灵敏度的荧光增强的中红外光热(Fe-MIP)显微镜。 MIP显微镜使用泵探针策略,其中中红外光振动激发样品和可见光探测热效应。我们不能测量通过中红外吸收调节的散射,我们将热敏荧光染料部署为探针,并测量两个共焦模式和宽场模式中的调制荧光强度。通过荧光标记,我们证明了高成像敏感性和组分特异性。

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