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Micrometer axial resolution OCT for corneal imaging

机译:千分尺轴向分辨率OCT用于角膜成像

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摘要

An optical coherence tomography (OCT) for high axial resolution corneal imaging is presented. The system uses 375 nm bandwidth (625 to 1000 nm) from a broadband supercontinuum light source. The system was developed in free space to minimize image quality degradation due to dispersion. A custom-designed spectrometer based on a Czerny Turner configuration was implemented to achieve an imaging depth of 1 mm. Experimentally measured axial resolution was 1.1 μm in corneal tissue and had a good agreement with the theoretically calculated resolution from the envelope of the spectral interference fringes. In vivo imaging was carried out and thin corneal layers such as the tear film and the Bowman’s layer were quantified in normal, keratoconus, and contact lens wearing eyes, indicating the system’s suitability for several ophthalmic applications.
机译:提出了用于高轴向分辨率角膜成像的光学相干断层扫描(OCT)。该系统使用来自宽带超连续谱光源的375 nm带宽(625至1000 nm)。该系统是在自由空间中开发的,以最大程度地减少由于分散而导致的图像质量下降。实施了基于Czerny Turner配置的定制设计的光谱仪,以实现1毫米的成像深度。实验测得的角膜组织轴向分辨率为1.1μm,与从光谱干涉条纹的包络线理论计算得到的分辨率具有良好的一致性。进行了体内成像,并对正常,圆锥角膜和角膜接触镜配戴的眼睛中的薄角膜层(例如泪膜和鲍曼层)进行了定量分析,表明该系统适用于多种眼科应用。

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