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In vivo intrinsic emission spectral imaging microscopy of mouse skin tissues

机译:小鼠皮肤组织的体内本征发射光谱成像显微镜

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摘要

Interest in the development of optical technologies that have the capability of performing in situ tissue diagnosis without the need for surgical biopsy and processing has been growing. In general, optical diagnostic techniques can be classified into two categories: (1) spectroscopic diagnostics and (2) optical imaging. Spectroscopic diagnostic techniques are used to obtain an entire spectrum of a single tissue site (point-measurement method). On the other hand, optical imaging methods are aimed at recording a two- or three-dimensional image of a sample region. A third category, which combines the two modalities, is currently in an early development phase. This category, referred to as spectral imaging, has been applied to cytomics, fluorescence resonance energy transfer (FRET) analysis, histology, fluorescence microscopy and autofluorescence microscopy. In this study, we combined a multi-photon microscope with a sensitive prism-based spectrograph and employed it for intrinsic emission spectral imaging microscopy of in vivo mouse skin tissues. We show results on: (1) spectral image RGB real-color visualization; (2) tissue layer discrimination using spectral signatures; (3) depth-resolved skin tissue spectral imaging; and (4) tissue component determination by spectral (linear) unmixing.
机译:能够进行原位组织诊断而无需进行手术活检和处理的光学技术的兴趣正在增长。通常,光学诊断技术可分为两类:(1)光谱诊断和(2)光学成像。光谱诊断技术用于获得单个组织部位的整个光谱(点测量方法)。另一方面,光学成像方法旨在记录样本区域的二维或三维图像。第三类,结合了两种方式,目前正处于早期开发阶段。此类别称为光谱成像,已应用于细胞组学,荧光共振能量转移(FRET)分析,组织学,荧光显微镜和自发荧光显微镜。在这项研究中,我们将多光子显微镜与基于灵敏棱镜的光谱仪相结合,并将其用于体内小鼠皮肤组织的内在发射光谱成像显微镜。我们在以下方面显示结果:(1)光谱图像RGB实色可视化; (2)使用光谱特征识别组织层; (3)深度分辨皮肤组织光谱成像; (4)通过光谱(线性)分解来确定组织成分。

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