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High temporal resolution aberrometry in a 50-eye population and implications for adaptive optics error budget

机译:50眼人群中的高时间分辨率像差法及其对自适应光学误差预算的启示

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摘要

We formed a database gathering the wavefront aberrations of 50 healthy eyes measured with an original custom-built Shack-Hartmann aberrometer at a temporal frequency of 236 Hz, with 22 lenslets across a 7-mm diameter pupil, for a duration of 20 s. With this database, we draw statistics on the spatial and temporal behavior of the dynamic aberrations of the eye. Dynamic aberrations were studied on a 5-mm diameter pupil and on a 3.4 s sequence between blinks. We noted that, on average, temporal wavefront variance exhibits a n−2 power-law with radial order n and temporal spectra follow a f−1.5 power-law with temporal frequency f. From these statistics, we then extract guidelines for designing an adaptive optics system. For instance, we show the residual wavefront error evolution as a function of the number of corrected modes and of the adaptive optics loop frame rate. In particular, we infer that adaptive optics performance rapidly increases with the loop frequency up to 50 Hz, with gain being more limited at higher rates.
机译:我们形成了一个数据库,该数据库收集了使用原始定制的Shack-Hartmann像差仪在236 Hz的瞬时频率下测量的50只健康眼睛的波前像差,其中22个小透镜横跨7毫米直径的瞳孔,持续20 s。使用该数据库,我们可以得出关于眼睛动态像差的时空行为的统计信息。在5mm直径的瞳孔和眨眼之间的3.4 s序列上研究了动态像差。我们注意到,平均而言,时间波前方差表现为n −2 幂律,径向阶次为n,时间谱遵循f -1.5 幂律,时间频率为f。然后,从这些统计信息中提取设计自适应光学系统的准则。例如,我们显示了残余波前误差演变与校正模式数和自适应光学环路帧率的关系。特别是,我们推断出自适应光学器件的性能会随着环路频率高达50 Hz而迅速提高,增益在更高速率下受到更大的限制。

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