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3D wide field-of-view Gabor-domain optical coherence microscopy advancing real-time in-vivo imaging and metrology

机译:3D宽视场Gabor域光学相干显微镜,促进了实时体内成像和计量

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Real-time volumetric high-definition wide-field-of-view in-vivo cellular imaging requires micron-scale resolution in 3D. Compactness of the handheld device and distortion-free images with cellular resolution are also critically required for on-site use in clinical applications. By integrating a custom liquid lens-based microscope and a dual-axis MEMS scanner in a compact handheld probe, Gabor-domain optical coherence microscopy (GD-OCM) breaks the lateral resolution limit of optical coherence tomography through depth, overcoming the tradeoff between numerical aperture and depth of focus, enabling advances in biotechnology. Furthermore, distortion-free imaging with no post-processing is achieved with a compact, lightweight handheld MEMS scanner that obtained a 12-fold reduction in volume and 17-fold reduction in weight over a previous dual-mirror galvanometer-based scanner. Approaching the holy grail of medical imaging - noninvasive real-time imaging with histologic resolution - GD-OCM demonstrates invariant resolution of 2 μm throughout a volume of 1 × 1 × 0.6 mm~3, acquired and visualized in less than 2 minutes with parallel processing on graphics processing units. Results on the metrology of manufactured materials and imaging of human tissue with GD-OCM are presented.
机译:实时体积高清宽视野体内细胞成像需要3D微米级的分辨率。手持设备的紧凑性和具有蜂窝分辨率的无失真图像也是临床应用中现场使用的关键要求。通过将基于定制液体透镜的显微镜和双轴MEMS扫描仪集成在紧凑的手持式探头中,Gabor域光学相干显微镜(GD-OCM)突破了深度上光学相干层析成像的横向分辨率限制,克服了数值之间的权衡光圈和焦点深度,从而推动生物技术的发展。此外,紧凑,轻巧的手持式MEMS扫描仪可实现无失真成像,而无需后期处理,与以前的基于双镜振镜的扫描仪相比,其体积减少了12倍,重量减少了17倍。接近医学成像的圣杯-具有组织学分辨率的无创实时成像-GD-OCM在1×1×0.6 mm〜3的体积中显示2μm的不变分辨率,并在不到2分钟的时间内通过并行处理实现了可视化在图形处理单元上。介绍了制造材料的计量学结果以及GD-OCM对人体组织成像的结果。

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