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视觉性能的理论极限。

Theoretical limits to visual performance.

作者信息

Schwiegerling J

机构信息

Ophthalmology & Optical Sciences, University of Arizona, Tucson, AZ 85721, USA.

出版信息

Surv Ophthalmol. 2000 Sep-Oct;45(2):139-46. doi: 10.1016/s0039-6257(00)00145-4.

Abstract

Wavefront sensors and scanning laser technology are enabling the correction of the aberrations of the eye. The effects of aberrations on visual performance are reviewed, and the theoretical limit of visual performance is predicted to understand the ultimate endpoint of these new technologies. A schematic eye model that incorporates diffraction, chromatic aberration, photopic response, the Stiles-Crawford effect, and pupil size is ray-traced to determine its limiting optical properties. These properties are compared to the detection requirements of the retina and brain to determine the theoretical limit of foveal vision. The theoretical limits on foveal vision are found to be between 20/12 and 20/5, depending on pupil diameter. It is concluded that emerging refractive surgery technologies may provide substantial increases in visual performance.

摘要

波前传感器和扫描激光技术正在实现对人眼像差的校正。本文回顾了像差对视觉性能的影响,并预测视觉性能的理论极限,以了解这些新技术的最终目标。通过光线追迹一个包含衍射、色差、明视觉响应、斯泰尔斯-克劳福德效应和瞳孔大小的简化眼模型,来确定其极限光学特性。将这些特性与视网膜和大脑的检测要求进行比较,以确定中央凹视觉的理论极限。根据瞳孔直径,发现中央凹视觉的理论极限在20/12至20/5之间。结论是,新兴的屈光手术技术可能会显著提高视觉性能。

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