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Nonlinear interferometric vibrational imaging of molecular species

机译:非线性干涉测量分子物种的振动成像

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Vibrationally-sensitive spectroscopic techniques are becoming important clinical tools for real-time, in vivo diagnostics. The molecular information made available with these techniques can provide early diagnostic signs of disease, often before morphological changes occur. We model and experimentally demonstrate a new technique for measuring optical spectroscopy signals using interferometric ranging. This new technique, nonlinear interferometric vibrational imaging (NIVI), uses principles from coherent anti-Stokes Raman scattering (CARS) spectroscopy and optical coherence tomography (OCT) to achieve cross-sectional imaging of the distribution of specific molecular species within a sample. Two CARS signals are generated, one from a known reference molecular species and a second from the unknown molecules present in a sample. These coherent signals are interfered with each other using an interferometer setup. The intensity envelope of the interference signal provides a measure of the concentration of selected bonds present in the sample focal volume. The interference fringes themselves can provide phase information that will allow for the exact reconstruction of the vibrational characteristics of the molecules in the sample focal volume. Theoretical background to CARS interferometry is presented, the experimental laser systems are described, and a depth-resolved scan line of a benzene filled cuvette is demonstrated. The experimental results show close resemblance to the theoretical models. The advantages of NIVI over existing vibrational imaging systems and its clinical implications are discussed.
机译:振动敏感的光谱技术正成为实时的重要临床工具,体内诊断。这些技术可用的分子信息可以提供早期诊断疾病症状,通常在形态变化发生之前。我们模型和实验证明了一种使用干涉测量测量光谱信号的新技术。这种新技术,非线性干涉振动成像(NIVI),使用来自相干反斯托克斯拉曼散射(CARS)光谱和光学相干断层扫描(OCT),以实现特定的分子种类的样本内的分布的横截面成像原理。产生两辆车信号,其中一个来自已知的参考分子物质,以及来自样品中的未知分子的第二个。使用干涉仪设置,这些相干信号彼此干扰。干扰信号的强度包络提供了样品焦体中存在的选定键的浓度的量度。干扰条纹本身可以提供相位信息,其将允许精确地重建样品焦卷体中分子的振动特性。给出了汽车干涉测量的理论背景,描述了实验激光系统,并说明了苯填充的比色皿的深度分辨扫描线。实验结果表明与理论模型相比相似。讨论了NIVI对现有振动成像系统的优点及其临床意义。

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