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Miniaturized all-optical photoacoustic microscopy based on microelectromechanical systems mirror scanning

机译:基于微机电系统镜面扫描的小型化全光学光声显微镜

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摘要

Achieving photoacoustic microscopic imaging through a miniaturized scanning head is a crucial step toward high-resolution photoacoustic endoscopy. In this work, we have developed a miniaturized probe head using a microelectromechanical systems (MEMS) based mirror for raster scan of the laser beam and our newly developed super broad bandwidth microring resonator based ultrasound detector for photoacoustic signal detection. Through this all-optical design, which offers unique advantages for endoscopic applications, this system is capable of three-dimensional (3D) imaging with high resolution of 17.5 μm in lateral direction and 20 μm in axial direction at a distance of 3.7 mm. After the performance of this system was validated through the experiments on printed grids and a resolution test target, microscopic imaging of the 3D microvasculatures in canine bladders was also conducted successfully, demonstrating the potential of novel photoacoustic endoscopic in future clinical management of bladder cancer.
机译:通过小型化的扫描头实现光声显微成像是迈向高分辨率光声内窥镜检查的关键一步。在这项工作中,我们开发了一种基于微机电系统(MEMS)的反射镜,用于激光束的光栅扫描,以及我们新开发的基于超宽带微环谐振器的超声探测器,用于光声信号检测。通过这种为内窥镜应用提供独特优势的全光学设计,该系统能够进行三维(3D)成像,其横向高分辨率为17.5μm,轴向高分辨率为3.7 mm,轴向分辨率为20μm。在通过打印网格和分辨率测试目标上的实验验证了该系统的性能之后,还成功地对犬膀胱中的3D微脉管系统进行了显微成像,证明了新型光声内窥镜在膀胱癌的未来临床治疗中的潜力。

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