Sulai Yusufu N, Dubra Alfredo
The Institute of Optics, University of Rochester, Rochester, New York 14627, USA.
Department of Ophthalmology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226 USA ; Department of Biophysics, Medical College of Wisconsin, Milwaukee, Wisconsin 53223, USA ; Department of Biomedical Engineering, Marquette University, Milwaukee, Wisconsin 53223, USA.
Biomed Opt Express. 2014 Aug 15;5(9):3059-73. doi: 10.1364/BOE.5.003059. eCollection 2014 Sep 1.
The correction of non-common path aberrations (NCPAs) between the imaging and wavefront sensing channel in a confocal scanning adaptive optics ophthalmoscope is demonstrated. NCPA correction is achieved by maximizing an image sharpness metric while the confocal detection aperture is temporarily removed, effectively minimizing the monochromatic aberrations in the illumination path of the imaging channel. Comparison of NCPA estimated using zonal and modal orthogonal wavefront corrector bases provided wavefronts that differ by λ/20 in root-mean-squared (λ/30 standard deviation). Sequential insertion of a cylindrical lens in the illumination and light collection paths of the imaging channel was used to compare image resolution after changing the wavefront correction to maximize image sharpness and intensity metrics. Finally, the NCPA correction was incorporated into the closed-loop adaptive optics control by biasing the wavefront sensor signals without reducing its bandwidth.
本文展示了在共焦扫描自适应光学检眼镜中,对成像通道和波前传感通道之间的非共光路像差(NCPA)进行校正的方法。通过在暂时移除共焦检测孔径的同时最大化图像清晰度指标来实现NCPA校正,从而有效最小化成像通道照明路径中的单色像差。使用区域和模态正交波前校正器基估计的NCPA进行比较,得到的波前在均方根(标准差约为λ/30)上相差约λ/20。在成像通道的照明和光收集路径中顺序插入柱面透镜,用于在改变波前校正以最大化图像清晰度和强度指标后比较图像分辨率。最后,通过在不降低波前传感器带宽的情况下对其信号进行偏置,将NCPA校正纳入闭环自适应光学控制中。