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Increased crystalline lens coverage in optical coherence tomography with oblique scanning and volume stitching

机译:用斜扫描和体积缝合增加光学相干断层扫描中的晶体透镜覆盖率

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摘要

A three-dimensional optical coherence tomography (OCT) crystalline lens imaging method based on oblique scanning and image stitching is presented. The method was designed to increase OCT imaging volume of crystalline lens in vivo. A long-range swept-source (SS)-OCT imaging system, which can measure the entire anterior segment of eye in a single acquisition, is used to acquire one central volume and 4 extra volumes with different angles between optical axis of OCT instrument and the pupillary axis. The volumes are then stitched automatically by developed software. To show its effectiveness and verify its validity, we scanned the subjects before and after pupil dilation drops and compared the experimental results. By determining the number of voxels representing the signal from the crystalline lens in 3-D OCT images, our method can provide around 17% additional volumetric lens coverage compared with a regular imaging procedure. The proposed approach could be used clinically in early diagnosis of cortical cataract. Wider field of view offered by this method may facilitate more accurate lens biometry in its peripheral zones, which potentially contributes to understanding of lens shape modifications of the accommodating eye.
机译:提出了一种基于斜扫描和图像缝合的三维光学相干断层扫描(OCT)晶体透镜成像方法。该方法旨在增加体内晶体晶状体的OCT成像体积。可以测量单个获取中的整个眼睛段的远程扫描源(SS)-OCT成像系统,用于在OCT仪器的光轴之间采用具有不同角度的一个中央卷和4个额外的体积瞳孔轴。然后由开发的软件自动缝合该卷。为了表明其有效性并验证其有效性,我们在瞳孔扩张下降之前和之后扫描了受试者并比较了实验结果。通过确定表示从晶体镜片中的信号的体素数量,我们的方法可以提供与常规成像过程相比的大约17%的容量镜头覆盖范围。拟议的方法可以在临床上使用皮质白内障的早期诊断。该方法提供的更广泛的视野可以促进其外围区域中更准确的镜头生物测量仪,这可能有助于了解容纳眼的透镜形状修改。

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