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Ultrahigh-resolution full-field optical coherence tomography

机译:超高分辨率全场光学相干断层扫描

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摘要

We have developed a white-light interference microscope for ultrahigh-resolution full-field optical coherence tomography of biological media. The experimental setup is based on a Linnik-type interferometer illuminated by a tungsten halogen lamp. En face tomographic images are calculated by a combination of interferometric images recorded by a high-speed CCD camera. Spatial resolution of 1.8 μm×0.9μm (transverse×axial) is achieved owing to the extremely short coherence length of the source, the compensation of dispersion mismatch in the interferometer arms, and the use of relatively high-numerical-aperture microscope objectives. A shot-noise-limited detection sensitivity of 90 dB is obtained in an acquisition time per image of 4 s. Subcellular-level images of plant, animal, and human tissues are presented.
机译:我们已经开发了一种白光干涉显微镜,用于生物介质的超高分辨率全场光学相干层析成像。实验设置基于卤素钨丝灯照亮的Linnik型干涉仪。面对面断层图像是通过高速CCD相机记录的干涉图像的组合来计算的。由于光源的相干长度极短,补偿了干涉仪臂中的色散失配以及使用了相对较高的数值孔径显微镜物镜,因此实现了1.8μm×0.9μm(横向x轴)的空间分辨率。每幅图像的采集时间为4 s,可获得90 dB的散粒噪声限制检测灵敏度。呈现了植物,动物和人体组织的亚细胞水​​平图像。

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