MTF based optimization design for customized human eye correction model

A human eye model and optimized design technology, applied in the field of vision correction, can solve the problems of not considering the wavefront aberration data of individual human eyes, not really reflecting the visual quality, and the aberration data not truly reflecting the optical quality of the human eye

Inactive Publication Date: 2010-03-17
王雁 +5
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AI Technical Summary

Problems solved by technology

Since the measurement of visual acuity and contrast sensitivity requires the subject's subjective participation and cannot truly reflect the visual quality, more sensitive and accurate evaluation methods are needed
As aberration is a tool to reflect the comprehensive effect of the eyes and the brain, all levels interact and influence each other. A single aberration data can no longer truly reflect the optical quality of the human eye, so an objective method is also needed
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Method used

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  • MTF based optimization design for customized human eye correction model

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Embodiment Construction

[0020] specific implementation

[0021] As shown in Figure 1, the Hartmann-Shack wavefront sensor [1] is used to measure the wavefront aberration of the human eye, and the aberration data of the individual human eye is added to the optimization function of the optical design software Zemax to define the wavefront aberration of the human eye. The actual aberrations of the eye. In addition, the whole-eye MTF can also be calculated from this wave aberration.

[0022] The Pentacam anterior segment analysis system [2] is used to measure the corneal curvature and the height of the front and rear surfaces of the cornea relative to the reference sphere. The height difference of the corneal surface along the sagittal direction was transformed into the height difference along the vertical direction, and the aspheric surface of the cornea was fitted by a high-order aspheric function.

[0023] A-type ultrasonic thickness gauge [3] is used to measure the distance between various parts of...

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Abstract

On the basis of a customized human eye model, the invention designs an optimized ablation mode for a refractive surgery to correct out-of-focus, astigmatism and other aberrations, and belongs to the technical field of orthoptics of human eyes. The design uses actually-measured human eye wavefront aberrations, cornea characteristic parameters and axial spacing data of each part in eyes in construction of the customized human eye model, and acquires respectively MTF of a whole eye, the cornea and crystalline lens through the optimization function of Zemax software. The design acquires the customized visual function through correlation between the aberration and a contrast sensitivity function, designs the optimized customized ablation so as to acquire the optimized visual quality. The customized visual quality can better meet the requirement of an operative patient on visual quality.

Description

technical field [0001] The invention belongs to the technical field of vision correction. Background technique [0002] In recent years, with the continuous development of modern optometry theory and technology, excimer laser surgery, as a tool to correct the refractive error of the human eye, has attracted more and more attention. In previous refractive surgery, the corneal surface was used as a spherical model for cutting. For example, the shape cutting model described by Munnerlyn et al. is a "Sharp-subtraction" mode, which changes the shape of the naturally evolved cornea, thus affecting the visual quality. [0003] Studies have shown that PRK, LASIK, LASEK and other operations change the shape of the cornea due to laser ablation, making the human eye change from the original normal physiological state (Prolate asphericity) to a non-physiological state (Oblate central flat, edge steep), thus Cause a series of optical problems. In the research of Fabrice Manns et al., i...

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Application Information

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IPC IPC(8): A61F9/00G06F17/50G06F19/00
Inventor 王雁王伟赵堪兴左彤
Owner 王雁
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