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Binocular open-view system to perform estimations of aberrations and scattering in the human eye

机译:双目开放式系统,用于估计人眼中的像差和散射

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摘要

We present a system that integrates a double-pass (DP) instrument and a Hartmann-Shack (HS) wavefront sensor to provide information not only on aberrations, but also on the scattering that occurs in the human eye. A binocular open-view design permits evaluations to be made under normal viewing conditions. Furthermore, the system is able to compensate for both the spherical and astigmatic refractive errors that occur during measurements by using devices with configurable optical power. The DP and HS techniques provide comparable data after estimating wavefront slopes with respect to the intersections of an ideal grid and compensating for residual errors caused by the optical defects of the measuring system. Once comparable data is obtained, it is possible to use this combined manner of assessment to provide information on scattering. Measurements in an artificial eye suggest that the characteristics of the ocular fundus may induce deviations of DP with respect to the HS data. These differences were quantified in terms of the modulation transfer function in young, healthy eyes measured in infrared light to demonstrate the potential use of the system in visual optics studies. (C) 2015 Optical Society of America
机译:我们提出了一种集成了双通道(DP)仪器和Hartmann-Shack(HS)波前传感器的系统,不仅可以提供关于像差的信息,还可以提供人眼中发生的散射的信息。双目开放式设计允许在正常观察条件下进行评估。此外,该系统能够通过使用具有可配置光功率的设备来补偿在测量过程中发生的球面和像散折射误差。在估计相对于理想网格的相交的波前斜率并补偿由测量系统的光学缺陷引起的残留误差之后,DP和HS技术可提供可比较的数据。一旦获得可比较的数据,就可以使用这种组合的评估方式来提供有关散射的信息。用人工眼进行的测量表明,眼底的特征可能导致DP相对于HS数据发生偏差。这些差异通过在红外光下测得的年轻健康眼睛的调制传递函数进行了量化,以证明该系统在视觉光学研究中的潜在用途。 (C)2015年美国眼镜学会

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