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Spectral optical coherence tomography in video-rate and 3D imaging of contact lens wear.

机译:隐形眼镜磨损的视频速率和3D成像中的光谱光学相干断层扫描。

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PURPOSE: To present the applicability of spectral optical coherence tomography (SOCT) for video-rate and three-dimensional imaging of a contact lens on the eye surface. METHODS: The SOCT prototype instrument constructed at Nicolaus Copernicus University (Torun, Poland) is based on Fourier domain detection, which enables high sensitivity (96 dB) and increases the speed of imaging 60 times compared with conventional optical coherence tomography techniques. Consequently, video-rate imaging and three-dimensional reconstructions can be achieved, preserving the high quality of the image. The instrument operates under clinical conditions in the Ophthalmology Department (Collegium Medicum Nicolaus Copernicus University, Bydgoszcz, Poland). A total of three eyes fitted with different contact lenses were examined with the aid of the instrument. Before SOCT measurements, slit lamp examinations were performed. RESULTS: Data, which are representative for each imaging mode, are presented. The instrument provided high-resolution (4 microm axial x 10 microm transverse) tomograms with an acquisition time of 40 micros per A-scan. Video-rate imaging allowed the simultaneous quantitative evaluation of the movement of the contact lens and assessment of the fitting relationship between the lens and the ocular surface. Three-dimensional scanning protocols further improved lens visualization and fit evaluation. CONCLUSIONS: SOCT allows video-rate and three-dimensional cross-sectional imaging of the eye fitted with a contact lens. The analysis of both imaging modes suggests the future applicability of this technology to the contact lens field.
机译:目的:介绍光谱光学相干断层扫描(SOCT)在眼表面接触镜的视频速率和三维成像的适用性。方法:尼古拉·哥白尼大学(波兰托伦市)制造的SOCT原型仪器基于傅立叶域检测,与传统的光学相干层析成像技术相比,该技术可实现高灵敏度(96 dB),并将成像速度提高60倍。因此,可以实现视频速率成像和三维重建,同时保持图像的高质量。该仪器可在眼科(波兰比得哥什的Medicum Nicolaus Copernicus大学,Collegium Medicum Nicolaus Copernicus University)的临床条件下运行。借助于该仪器检查了总共三只装有不同隐形眼镜的眼睛。在进行SOCT测量之前,先进行裂隙灯检查。结果:给出了代表每种成像模式的数据。该仪器提供了高分辨率(轴向4微米x横向10微米)的X线断层图,每次A扫描的采集时间为40微米。视频速率成像允许同时定量评估隐形眼镜的运动和评估隐形眼镜与眼表之间的配合关系。三维扫描协议进一步改善了镜片的可视性和适合度评估。结论:SOCT可对装有隐形眼镜的眼睛进行视频速率和三维横截面成像。对两种成像模式的分析表明,该技术在隐形眼镜领域的未来适用性。

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