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Three-dimensional tooth imaging using multiphoton and second harmonic generation microscopy

机译:三维牙齿成像使用多光子和二次谐波产生显微镜

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Detailed morphological and cellular information relating to the human tooth have traditionally been obtained through histological studies that required decalcification, staining, and fixation. With the recent invention of multiphoton microscopy, it has become possible to acquire high resolution images without histological procedures. Using an epi-illuminated multiphoton microscope, we obtained two-photon excited autofluorescence and second harmonic generation (SHG) images of ex vivo human tooth. By combining these two imaging modalities we obtained submicron resolution images of the enamel, dentin, and the periodontal ligaments. The enamel emits endogenous two-photon autofluorescence. The structure of the dentin is visible from both the autofluorescence and second harmonic generation signals. The periodontal ligament composed mostly of collagen can be visualized by SHG imaging. We also constructed three dimensional images of the enamel, dentin, and periodontal ligament. The effectiveness of using multiphoton and second harmonic generation microscopy to obtain structural information of teeth suggest its potential use in dental diagnostics.
机译:传统上通过所需脱钙,染色和固定的组织学研究获得了与人牙有关的详细的形态学和细胞信息。随着最近的多相显微镜的发明,已经可以获得没有组织学程序的高分辨率图像。使用EPI闪光的多光子显微镜,我们获得了离体牙齿的双光子激发自荧光和二次谐波产生(SHG)图像。通过组合这两个成像方式,我们获得了牙釉质,牙本质和牙周韧带的亚马逊分辨率图像。牙釉质发射内源性双光子自发荧光。从自发荧光和二次谐波产生信号中可以看到牙本质的结构。由SHG成像可视化主要组成的牙周韧带。我们还构建了牙釉质,牙本质和牙周韧带的三维图像。使用多光子和二次谐波产生显微镜的有效性,以获得牙齿结构信息表明其在牙科诊断中的潜在用途。

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