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首页> 外文期刊>Biomedical Optics Express >In vivo human crystalline lens topography
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In vivo human crystalline lens topography

机译:体内人类晶状体形貌

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摘要

Custom high-resolution high-speed anterior segment spectral domain optical coherence tomography (OCT) was used to characterize three-dimensionally (3-D) the human crystalline lens in vivo. The system was provided with custom algorithms for denoising and segmentation of the images, as well as for fan (scanning) and optical (refraction) distortion correction, to provide fully quantitative images of the anterior and posterior crystalline lens surfaces. The method was tested on an artificial eye with known surfaces geometry and on a human lens in vitro, and demonstrated on three human lenses in vivo. Not correcting for distortion overestimated the anterior lens radius by 25% and the posterior lens radius by more than 65%. In vivo lens surfaces were fitted by biconicoids and Zernike polynomials after distortion correction. The anterior lens radii of curvature ranged from 10.27 to 14.14 mm, and the posterior lens radii of curvature ranged from 6.12 to 7.54 mm. Surface asphericities ranged from −0.04 to −1.96. The lens surfaces were well fitted by quadrics (with variation smaller than 2%, for 5-mm pupils), with low amounts of high order terms. Surface lens astigmatism was significant, with the anterior lens typically showing horizontal astigmatism (Z22 ranging from −11 to −1 µm) and the posterior lens showing vertical astigmatism (Z22 ranging from 6 to 10 µm).
机译:使用定制的高分辨率高速前节光谱域光学相干断层扫描(OCT)来表征体内的人类晶状体的三维(3-D)特征。该系统具有用于图像的去噪和分割以及扇形(扫描)和光学(折射)畸变校正的定制算法,以提供前,后晶状体表面的完全定量图像。该方法在具有已知表面几何形状的人造眼睛上进行了体外测试,并在人的晶状体上进行了测试,并在体内的三种人晶状体上进行了验证。不校正畸变会高估前镜片半径25%,后镜片半径高65%以上。畸变校正后,通过双曲面和Zernike多项式拟合体内晶状体表面。前镜的曲率半径在10.27至14.14mm的范围内,而后镜的曲率半径在6.12至7.54mm的范围内。表面非球面度范围为-0.04至-1.96。镜片表面非常适合二次曲面(对于5毫米瞳孔,其变化小于2%),并且具有少量的高阶项。表面晶状体散光是显着的,前镜通常表现出水平散光(Z22的范围是-11至-1 µm),后晶状体通常表现出垂直的散光(Z22的范围是6至10 µm)。

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