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A fiber-optic system for dual-modality photoacoustic microscopy and confocal fluorescence microscopy using miniature components

机译:使用微型组件的双模态光声显微镜和共聚焦荧光显微镜的光纤系统

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摘要

Imaging of the cells and microvasculature simultaneously is beneficial to the study of tumor angiogenesis and microenvironments. We designed and built a fiber-optic based photoacoustic microscopy (PAM) and confocal fluorescence microscopy (CFM) dual-modality imaging system. To explore the feasibility of this all-optical device for future endoscopic applications, a microelectromechanical systems (MEMS) scanner, a miniature objective lens, and a small size optical microring resonator as an acoustic detector were employed trying to meet the requirements of miniaturization. Both the lateral resolutions of PAM and CFM were quantified to be 8.8 μm. Axial resolutions of PAM and CFM were experimentally measured to be 19 μm and 53 μm, respectively. The experiments on ex vivo animal bladder tissues demonstrate the good performance of this system in imaging not only microvasculature but also cellular structure, suggesting that this novel imaging technique holds potential for improved diagnosis and guided treatment of bladder cancer.
机译:同时对细胞和微脉管系统成像有利于肿瘤血管生成和微环境的研究。我们设计并构建了基于光纤的光声显微镜(PAM)和共焦荧光显微镜(CFM)双模态成像系统。为了探索这种全光学设备在未来内窥镜应用中的可行性,尝试使用微机电系统(MEMS)扫描仪,微型物镜和小尺寸光学微环谐振器作为声检测器,以满足微型化的要求。 PAM和CFM的横向分辨率均被量化为8.8μm。通过实验测量,PAM和CFM的轴向分辨率分别为19μm和53μm。在离体动物膀胱组织上进行的实验表明,该系统不仅在微血管成像方面而且在细胞结构成像方面都具有良好的性能,这表明这种新颖的成像技术具有改善膀胱癌诊断和指导治疗的潜力。

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