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Three-dimensional ophthalmic optical coherence tomography with a refraction correction algorithm

机译:具有折射校正算法的三维眼科光学相干断层扫描

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摘要

We built an optical coherence tomography (OCT) system with a rapid scanning optical delay (RSOD) line, which allows probing full axial eye length. The system produces Three-dimensional (3D) data sets that are used to generate 3D tomograms of the model eye. The raw tomographic data were processed by an algorithm, which is based on Snell's law to correct the interface positions. The Zernike polynomials representation of the interfaces allows quantitative wave aberration measurements. 3D images of our results are presented to illustrate the capabilities of the system and the algorithm performance. The system allows us to measure intra-ocular distances.
机译:我们建立了具有快速扫描光学延迟(RSOD)线的光学相干断层扫描(OCT)系统,允许探测全轴向眼长。该系统产生三维(3D)数据集,用于生成模型眼睛的3D断层图像。原始断层摄影数据由算法处理,该算法基于Snell定律来校正接口位置。界面的Zernike多项式表示允许定量波像差测量。提供了我们结果的3D图像以说明系统的功能和算法性能。该系统允许我们测量眼部距离。

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