一种基于自适应光学的人眼色差客观测量系统及方法

By using an adaptive optics-based objective measurement system for human eye color difference, combined with adaptive optics technology to correct monochromatic aberration of the human eye, and measuring the offset of beacon light of different wavelengths at the image point on the fundus, the system solves the accuracy and consistency problems of human eye color difference measurement in existing technologies, and achieves high-precision axial and lateral color difference measurement.

CN115040071BActive Publication Date: 2026-07-17CHENGDU UNIV OF TRADITIONAL CHINESE MEDICINE

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHENGDU UNIV OF TRADITIONAL CHINESE MEDICINE
Filing Date
2022-07-01
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies are difficult to use efficiently and accurately to measure the axial and lateral chromatic aberration of the human eye. Subjective measurement methods are time-consuming and have poor consistency in results, while objective measurement methods are complex and difficult to obtain high-quality retinal images.

Method used

An objective measurement system for human eye color difference based on adaptive optics is adopted. By measuring the offset of beacon light of different wavelengths at the image point on the fundus, and combining adaptive optics technology to correct monochromatic aberration of the human eye, a high-precision objective measurement of axial and lateral color difference of the human eye is achieved.

Benefits of technology

It significantly improves the accuracy and consistency of human eye color difference measurement, simplifies the measurement process, reduces measurement time, and enables high-precision axial and lateral color difference measurement in a single system.

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Abstract

本发明公开了一种基于自适应光学的人眼色差客观测量系统及方法,所述系统包括光源子系统、中间光学子系统、波前传感器子系统、光电探测子系统和计算机,其中,所述光源子系统,包括参考光源单元和测量光源单元,所述参考光源单元或 / 和测量光源单元发出的光通过中间光学子系统后,进入人眼,人眼反射的光再经过中间子光学系统进入波前传感器子系统和 / 或进入光电探测子系统;所述中间光学子系统布置在光源子系统与人眼之间的光路中;所述计算机,分别与光源子系统、中间光学子系统、波前传感器子系统、光电探测子系统连接。本发明的测量系统结构简单,无需主观判断,测量时间短,从而可以显著提高测量结果的准确性和一致性。
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