光学相干层析成像
光学
图像分辨率
图像质量
帧速率
共焦
断层摄影术
材料科学
显微镜
显微镜
图像处理
临床前影像学
医学影像学
迭代重建
光学层析成像
共焦显微镜
视野
可视化
光学切片
时间分辨率
连贯性(哲学赌博策略)
干涉显微镜
分辨率(逻辑)
直线(几何图形)
计算机科学
断层重建
空间频率
干扰(通信)
计算机视觉
景深
血流
薄层荧光显微镜
数据采集
空间滤波器
光流
作者
Victor Colas,Jonas Ogien,Djinan Sadouni,Diane de Dietrich,Arnaud Dubois
标识
DOI:10.1117/1.oe.65.2.023102
摘要
Line-field confocal optical coherence tomography (LC-OCT) is an optical imaging technique based on low-coherence interference microscopy that uses line illumination and line detection to generate tomographic images of semi-transparent samples with micrometer-scale spatial resolution. We present an LC-OCT system that achieves a threefold increase in acquisition speed compared with previously reported systems, without compromising image quality in terms of spatial resolution, contrast, or field of view. Through modifications to the experimental set-up, as well as changes and optimization of image acquisition and processing, the system captures vertical section images [1250 μm×500 μm, lateral (x) × axial (z)] and horizontal section images [1250 μm×500 μm, lateral (x) × lateral (y)] at a frame rate of 30 Hz. High-speed in vivo imaging of human skin is demonstrated with a resolution of 1.4 μm×1.1 μm (lateral × axial). No motion blur is observed during rapid scanning of large skin areas. Notably, the system allows visualization of capillary blood flow by imaging moving red blood cells.
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