Kulcsár Caroline, Raynaud Henri-François, Garcia-Rissmann Aurea
Laboratoire Charles Fabry - Institut d'Optique Graduate School - CNRS, Universit Paris-Saclay, France.
Laboratório Nacional de Astrofísica/MCTI, Brazil - Previously with University Paris 13, France.
Biomed Opt Express. 2016 Feb 25;7(3):1051-73. doi: 10.1364/BOE.7.001051. eCollection 2016 Mar 1.
This paper studies the effect of pupil displacements on the best achievable performance of retinal imaging adaptive optics (AO) systems, using 52 trajectories of horizontal and vertical displacements sampled at 80 Hz by a pupil tracker (PT) device on 13 different subjects. This effect is quantified in the form of minimal root mean square (rms) of the residual phase affecting image formation, as a function of the delay between PT measurement and wavefront correction. It is shown that simple dynamic models identified from data can be used to predict horizontal and vertical pupil displacements with greater accuracy (in terms of average rms) over short-term time horizons. The potential impact of these improvements on residual wavefront rms is investigated. These results allow to quantify the part of disturbances corrected by retinal imaging systems that are caused by relative displacements of an otherwise fixed or slowy-varying subject-dependent aberration. They also suggest that prediction has a limited impact on wavefront rms and that taking into account PT measurements in real time improves the performance of AO retinal imaging systems.
本文研究瞳孔位移对视网膜成像自适应光学(AO)系统最佳可实现性能的影响,使用瞳孔跟踪器(PT)设备以80Hz的采样频率在13名不同受试者上采集了52条水平和垂直位移轨迹。这种影响以影响图像形成的残余相位的最小均方根(rms)的形式进行量化,它是PT测量与波前校正之间延迟的函数。结果表明,从数据中识别出的简单动态模型可用于在短期时间范围内更准确地预测水平和垂直瞳孔位移(就平均均方根而言)。研究了这些改进对残余波前均方根的潜在影响。这些结果有助于量化视网膜成像系统校正的由原本固定或缓慢变化的个体相关像差的相对位移所引起的干扰部分。它们还表明预测对波前均方根的影响有限,并且实时考虑PT测量可提高AO视网膜成像系统的性能。