首页> 外文会议>Conference on photonic therapeutics and diagnostics VIII >Reflectance confocal microscope for imaging oral tissues in vivo, potentially with line scanning as a low-cost approach for clinical use
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Reflectance confocal microscope for imaging oral tissues in vivo, potentially with line scanning as a low-cost approach for clinical use

机译:反射共聚焦显微镜可用于体内口腔组织成像,可能将线扫描作为一种低成本的临床方法

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Reflectance confocal microscopy with a line scanning approach potentially offers a smaller, simpler and less expensive approach than traditional methods of point scanning for imaging in living tissues. With one moving mechanical element (galvanometric scanner), a linear array detector and off-the-shelf optics, we designed a compact (102xl02x76mm) line scanning confocal reflectance microscope (LSCRM) for imaging human tissues in vivo in a clinical setting. Custom-designed electronics, based on field programmable gate array (FPGA) logic has been developed. With 405 ran illumination and a custom objective lens of numerical aperture 0.5, lateral resolution was measured to be 0.8 urn (calculated 0.64 urn). The calculated optical sectioning is 3.2 urn. Preliminary imaging shows nuclear and cellular detail in human skin and oral epithelium in vivo. Blood flow is also visualized in the deeper connective tissue (lamina propria) in oral mucosa. Since a line is confocal only in one dimension (parallel) but not in the other, the detection is more sensitive to multiply scattered out of focus background noise than in the traditional point scanning configuration. Based on the results of our translational studies thus far, a simpler, smaller and lower-cost approach based on a LSCRM appears to be promising for clinical imaging.
机译:与用于活体组织成像的传统点扫描方法相比,采用线扫描方法的反射共聚焦显微镜可能提供一种更小,更简单且更便宜的方法。我们使用一个移动的机械元件(检流计扫描仪),线性阵列检测器和现成的光学器件,设计了一款紧凑型(102x102x76mm)线扫描共聚焦反射显微镜(LSCRM),用于在临床环境中对人体组织进行成像。已经开发了基于现场可编程门阵列(FPGA)逻辑的定制设计电子产品。使用405 nm照明和数值孔径为0.5的定制物镜,测得的横向分辨率为0.8 urn(计算得出的值为0.64 urn)。计算得出的光学截面为3.2 n。初步成像显示了人体皮肤和口腔上皮细胞的核和细胞细节。在口腔粘膜的更深的结缔组织(固有层)中还可以看到血流。由于一条线仅在一个维度(平行)上共聚焦,而在另一维度上不是共聚焦,因此与传统的点扫描配置相比,检测对于分散散焦的焦点背景噪声更为敏感。根据到目前为止我们的翻译研究结果,基于LSCRM的更简单,更小且成本更低的方法似乎有望用于临床成像。

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