Changes in Focal Length and Spherical Aberration of the Human Crystalline Lens with Ageing

A. Glasser, M. Campbell
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Abstract

The human lens undergoes many changes during ageing that compromise vision. Many of these changes are relatively poorly characterized due to the difficulties of measuring optical properties of the human lens in vivo. We have undertaken a study of human eye bank eyes to better understand some of the effects of aging on the human lens which may help to understand presbyopia and the lens paradox. The lens continues to grow throughout life resulting in an increase in axial thickness1 and increased curvatures2. This would be expected to result in an increasing lens power that, without compensatory changes in the eye, would cause a myopic shift with ageing. However, presbyopia results in exactly the opposite effect, namely a loss of near vision. Changes in the refractive index distribution in the lens have been suggested to account for this ‘lens paradox’3,4. Previous studies have attempted to model changes in the refractive index distribution with ageing, but these models are in part based on assumptions that have not been verified for the human lens. In addition, in order to completely understand how the lens contributes to visual function in the eye it is necessary to consider the interaction of the lens optics with the cornea and the comeal-lens separation.
人体晶状体焦距和球差随年龄的变化
随着年龄的增长,人类的晶状体会发生许多变化,从而影响视力。由于在体内测量人体晶状体光学特性的困难,许多这些变化的特征相对较差。我们对人类眼库的眼睛进行了一项研究,以更好地了解衰老对人类晶状体的影响,这可能有助于理解老花眼和晶状体悖论。晶状体在整个使用寿命中不断增长,导致轴向厚度增加和曲率增加。这将导致晶状体的功率增加,如果眼睛没有补偿性的变化,就会随着年龄的增长而引起近视。然而,老花眼会导致完全相反的结果,即丧失近视力。透镜折射率分布的变化被认为可以解释这种“透镜悖论”3,4。以前的研究试图模拟随着年龄增长折射率分布的变化,但这些模型部分是基于尚未在人类晶状体上得到验证的假设。此外,为了全面了解晶状体对人眼视觉功能的影响,有必要考虑晶状体光学与角膜和角膜-晶状体分离的相互作用。
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