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Spectral resolved imaging of biological samples

机译:生物样品的光谱分辨成像

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摘要

The spectral resolved imaging technique has a typical characteristic that it allows simultaneous recording of real-color RGB image representation and corresponding spectra. In this paper, we present a nonlinear spectral resolved imaging approach based on two-photon excited autofluorescence and second harmonic generation of biological tissues to elucidate microstructure and spectroscopic features of unstained rabbit arterial wall. Coupled to the image-guided spectral analysis method, we use a series of recorded nonlinear spectral resolved images excited by a broad range of laser wavelengths (730-910nm) to identify five components in unstained rabbit arterial wall including in NADH, elastin, flavin, porphyrin derivatives and collagen. Using the combination of a nonlinear spectral resolved imaging approach and two-channel synchronized detection, we obtained high contrast 2-D and 3-D images of collagen and elastic fiber in the arterial wall. Our results demonstrate that simultaneously linking a nonlinear spectral resolved imaging approach with the image-guided spectral analysis method and multi-channel synchronized detection technique is a very useful method because it can in tandem acquire the structural modifications of different tissue components and quantitatively record the change of corresponding emission signal. This method has the potential to provide more comprehensive diagnostic information for determining tissue pathology which associated with mechanical properties of aorta wall and pharmacodynamical studies of vessels.
机译:光谱分辨成像技术具有一个典型特征,即它可以同时记录实色RGB图像表示和相应的光谱。在本文中,我们提出了一种基于双光子激发的自发荧光和生物组织的二次谐波生成的非线性光谱分辨成像方法,以阐明未染色兔动脉壁的微观结构和光谱特征。结合图像引导光谱分析方法,我们使用一系列记录的非线性光谱分辨图像,这些图像被宽范围的激光波长(730-910nm)激发,以识别未染色的兔动脉壁中的五个成分,包括NADH,弹性蛋白,黄素,卟啉衍生物和胶原蛋白。结合使用非线性光谱分辨成像方法和两通道同步检测,我们获得了动脉壁中胶原蛋白和弹性纤维的高对比度2-D和3-D图像。我们的结果表明,将非线性光谱分辨成像方法与图像引导光谱分析方法和多通道同步检测技术同时连接是一种非常有用的方法,因为它可以同时获取不同组织成分的结构修饰并定量记录变化相应的发射信号。该方法有可能提供更全面的诊断信息,用于确定与主动脉壁的机械特性和血管的药效学研究相关的组织病理学。

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