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Ultrahigh speed spectral-domain optical coherence microscopy

机译:超高速光谱域光学相干显微镜

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摘要

We demonstrate a compact, ultrahigh speed spectral-domain optical coherence microscopy (SD-OCM) system for multiscale imaging of specimens at 840 nm. Using a high speed 512-pixel line scan camera, an imaging speed of 210,000 A-scans per second was demonstrated. Interchangeable water immersion objectives with magnifications of 10×, 20×, and 40× provided co-registered en face cellular-resolution imaging over several size scales. Volumetric OCM data sets and en face OCM images were demonstrated on both normal and pathological human colon and kidney specimens ex vivo with an axial resolution of ~4.2 µm, and transverse resolutions of ~2.9 µm (10×), ~1.7 µm (20×), and ~1.1 µm (40×) in tissue. In addition, en face OCM images acquired with high numerical aperture over an extended field-of-view (FOV) were demonstrated using image mosaicking. Comparison between en face OCM images among different transverse and axial resolutions was demonstrated, which promises to help the design and evaluation of imaging performance of Fourier domain OCM systems at different resolution regimes.
机译:我们展示了一个紧凑的超高速光谱域光学相干显微镜(SD-OCM)系统,用于在840 nm处对标本进行多尺度成像。使用高速512像素线扫描相机,展示了每秒210,000次A扫描的成像速度。放大倍数为10倍,20倍和40倍的可互换水浸物镜在多个尺寸尺度上提供了共配准的面细胞分辨率成像。在正常和病理性的人类结肠和肾脏标本上均显示了体积OCM数据集和正面OCM图像,其轴向分辨率约为〜4.2 µm,横向分辨率约为〜2.9 µm(10×),〜1.7 µm(20× ),在组织中约为1.1微米(40倍)。此外,使用图像镶嵌技术演示了在扩展视场(FOV)上以高数值孔径获取的面部OCM图像。证明了不同横向和轴向分辨率之间的面对面OCM图像之间的比较,有望帮助设计和评估傅立叶域OCM系统在不同分辨率下的成像性能。

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