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High frame rate video mosaicking microendoscope to image large regions of intact tissue with subcellular resolution

机译:高帧速率视频镶嵌微内窥镜以亚细胞分辨率图像图像大区域完整组织

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摘要

High-resolution microendoscopy (HRME) is a low-cost strategy to acquire images of intact tissue with subcellular resolution at frame rates ranging from 11 to 18 fps. Current HRME imaging strategies are limited by the small microendoscope field of view (∼0.5 mm2); multiple images must be acquired and reliably registered to assess large regions of clinical interest. Image mosaics have been assembled from co-registered frames of video acquired as a microendoscope is slowly moved across the tissue surface, but the slow frame rate of previous HRME systems made this approach impractical for acquiring quality mosaicked images from large regions of interest. Here, we present a novel video mosaicking microendoscope incorporating a high frame rate CMOS sensor and optical probe holder to enable high-speed, high quality interrogation of large tissue regions of interest. Microendoscopy videos acquired at >90 fps are assembled into an image mosaic. We assessed registration accuracy and image sharpness across the mosaic for images acquired with a handheld probe over a range of translational speeds. This high frame rate video mosaicking microendoscope enables in vivo probe translation at >15 millimeters per second while preserving high image quality and accurate mosaicking, increasing the size of the region of interest that can be interrogated at high resolution from 0.5 mm2 to >30 mm2. Real-time deployment of this high-frame rate system is demonstrated in vivo and source code made publicly available.
机译:高分辨率微内窥镜(HRME)是一种低成本的策略,用于在帧速率范围为11至18 fps的框架速率下采用具有亚细胞分辨率的完整组织的图像。目前的HRME成像策略受小型微内窥镜视野(~0.5 mm2)的限制;必须获取和可靠地登记多个图像,以评估大的临床兴趣区域。图像马赛克已从作为微内窥镜被获取的共同登记的视频帧组装在组织表面上慢慢移动,但先前的HRME系统的慢速帧速率使得这种方法从大型兴趣区域获取质量镶嵌图像的不切实际。在这里,我们提出了一种新颖的视频镶嵌微内窥镜,包括高帧速率CMOS传感器和光学探针支架,以实现高速,高质量的感兴趣的组织区域询问。在> 90 FPS获取的微内窥镜视频被组装成图像马赛克。我们在马赛克上评估了登记准确性和图像清晰度,用于在一系列平移速度上用手持探头获取的图像。这款高帧速率视频镶嵌微内窥镜可在每秒> 15毫米的体内探测翻译中,同时保持高图像质量和精确的摩托车,增加了感兴趣区域的大小,可以在高分辨率为0.5mm2至> 30mm2的高分辨率下进行询问。实时部署此高帧速率系统在Vivo和源代码上公开可用。

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