Far-field infrared system for the high-accuracy in-situ measurement of ocular pupil diameter

Csilla Fulep, G. Erdei
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引用次数: 1

Abstract

It is known that human visual performance is influenced by the ocular pupil diameter. So that we can analyze its effect on visual acuity, we developed a high-accuracy measuring system by which the pupil size can be monitored simultaneously with visual acuity examinations. We used infrared illumination and a far-field imaging setup in order not to disturb the subject. In this paper we present our measuring system comprising a camera, an infrared reflector and a unique evaluation/controlling software. According to our experimental results continuous pupil monitoring is feasible with ±0.2 mm spatial accuracy. The new system allows us to reveal delicate tendencies in pupil accommodation during visual acuity tests.
远场红外系统用于眼瞳直径的高精度原位测量
众所周知,人的视觉表现受瞳孔直径的影响。为了分析其对视力的影响,我们开发了一种高精度的测量系统,通过该系统可以同时监测瞳孔大小和视力检查。为了不打扰拍摄对象,我们使用了红外线照明和远场成像装置。本文介绍了一种由相机、红外反射器和独特的评价/控制软件组成的测量系统。实验结果表明,在±0.2 mm的空间精度下,瞳孔连续监测是可行的。新系统使我们能够在视力测试中揭示瞳孔适应的微妙趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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