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首页> 外文期刊>Journal of refractive surgery >Theoretical effect of changes in entrance pupil magnification on wavefront-guided laser refractive corneal surgery.
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Theoretical effect of changes in entrance pupil magnification on wavefront-guided laser refractive corneal surgery.

机译:在波前引导的激光屈光角膜手术中,瞳孔放大倍数变化的理论效果。

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PURPOSE: To explore theoretically the effect on the correction of higher order aberrations of changes in the magnification between the aperture stop (iris) and entrance pupil of the eye, following myopic excimer laser ablation. METHODS: Using a simple schematic eye model, paraxial calculations were made of the position and magnification of the entrance pupil of the eye as a function of the power of a myopic photorefractive keratectomy correction. RESULTS: Corneal flattening following myopic corneal ablation results in a reduction in the magnification between the aperture stop (iris) and entrance pupil. This implies that an ablation designed to correct higher order errors on the basis of the preoperative wavefront aberration across the entrance pupil will result in an incomplete correction. Taking into account the fact that the total ocular aberration depends on the combined effects of all optical components of the eye, which are distributed in depth, rather than being associated simply with the anterior surface of the cornea, the exact effects depend on the methods used to measure the aberration and the distribution of the total aberration between the different components of the eye. The errors in correction increase with the magnitude of the myopic correction. CONCLUSIONS: To minimize the postoperative higher order aberrations in higher amounts of myopia, it may be desirable to remeasure them after a first ablation to correct the second-order refractive errors and then to carry out a second ablation to correct the higher order aberrations.
机译:目的:从理论上探讨近视准分子激光消融对孔径光阑(虹膜)和眼睛入射瞳孔之间放大倍率变化的高阶像差校正的影响。方法:使用简单的示意性眼部模型,根据近视屈光性角膜切除术矫正的功效,对眼睛入射瞳孔的位置和放大倍数进行近轴计算。结果:近视角膜消融后角膜变平导致孔径光阑(虹膜)和入射瞳孔之间的放大倍率降低。这意味着设计为在整个入射瞳孔的术前波前像差基础上校正高阶误差的消融将导致不完全校正。考虑到总的眼像差取决于眼睛的所有光学组件的组合效果,这些效果在深度上分布,而不是简单地与角膜的前表面相关联,因此确切的效果取决于所使用的方法测量像差和眼睛不同部分之间的总像差分布。矫正的误差随着近视矫正的幅度而增加。结论:为了使较高数量的近视眼的术后高阶像差最小化,可能需要在第一次消融后重新测量它们以矫正二阶屈光不正,然后再进行第二次消融以矫正更高阶的像差。

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