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Influence of chromatic aberration on image quality in pseudophakic eyes with high myopia

机译:色差对高度近视假晶状体眼图像质量的影响

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Abstract: Both theoretical an experimental results have shown that transversal chromatic aberration (TCA), also called chromatic difference in image position (CDP) in the object space, is the aberration that most deteriorates ocular image quality. In this paper we study the image quality of pseudophakic eyes based on the transversal spherical aberration (TA) and on the TCA. This study has been done from the point of view of geometrical and wave optics. The eye model that we use is a modified version of the whole theoretical eye used by Navarro et al. Using geometrical optics, we calculate the TA and the TCA for plano-convex or concave intraocular lenses (IOLs) and for meniscus IOLs. The loss of image quality and visual acuity increases as the TA and TCA increase. In addition to this, we have calculated the polychromatic modulation transfer functions (MTF) based on point spread functions (PSF) taking into account spherical aberration and defocus coefficients for the same cases. Finally, as regards chromatic and spherical aberrations, we can establish what type of IOL and which bending factor would best improve image quality for a given patient. !11
机译:摘要:两种理论上的实验结果均表明,横向色差(TCA),也称为物体空间中图像位置的色差(CDP),是使眼部图像质量最差的像差。在本文中,我们基于横向球差(TA)和TCA研究了伪晶状体眼的图像质量。这项研究是从几何和波光学的角度进行的。我们使用的眼睛模型是Navarro等人使用的整个理论眼睛的修改版本。使用几何光学,我们可以计算平凸或凹入式人工晶状体(IOL)和弯月形IOL的TA和TCA。随着TA和TCA的增加,图像质量和视敏度的损失也随之增加。除此之外,我们还基于点扩展函数(PSF)计算了多色调制传递函数(MTF),其中考虑了相同情况下的球差和散焦系数。最后,关于色差和球差,我们可以确定哪种IOL类型和哪种弯曲因子最能改善给定患者的图像质量。 !11

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