首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Adaptive optics scanning laser ophthalmoscope with integrated wide-field retinal imaging and tracking
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Adaptive optics scanning laser ophthalmoscope with integrated wide-field retinal imaging and tracking

机译:集成了广域视网膜成像和跟踪功能的自适应光学扫描激光检眼镜

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摘要

We have developed a new, unified implementation of the adaptive optics scanning laser ophthalmoscope (AOSLO) incorporating a wide-field line-scanning ophthalmoscope (LSO) and a closed-loop optical retinal tracker. AOSLO raster scans are deflected by the integrated tracking mirrors so that direct AOSLO stabilization is automatic during tracking. The wide-field imager and large-spherical-mirror optical interface design, as well as a large-stroke deformable mirror (DM), enable the AOSLO image field to be corrected at any retinal coordinates of interest in a field of >25 deg. AO performance was assessed by imaging individuals with a range of refractive errors. In most subjects, image contrast was measurable at spatial frequencies close to the diffraction limit. Closed-loop optical (hardware) tracking performance was assessed by comparing sequential image series with and without stabilization. Though usually better than 10 (mu)m rms, or 0.03 deg, tracking does not yet stabilize to single cone precision but significantly improves average image quality and increases the number of frames that can be successfully aligned by software-based post-processing methods. The new optical interface allows the high-resolution imaging field to be placed anywhere within the wide field without requiring the subject to re-fixate, enabling easier retinal navigation and faster, more efficient AOSLO montage capture and stitching.
机译:我们已经开发了一种新的统一的自适应光学扫描激光检眼镜(AOSLO)实施方案,该系统结合了宽视野线扫描检眼镜(LSO)和闭环光学视网膜跟踪仪。 AOSLO光栅扫描由集成的跟踪镜偏转,因此在跟踪期间自动进行直接的AOSLO稳定化。宽视场成像器和大球面镜光学接口设计以及大行程可变形反射镜(DM)使AOSLO像场可以在大于25度的视场中的任何感兴趣的视网膜坐标处进行校正。通过对具有一定屈光不正范围的个体进行成像来评估AO性能。在大多数对象中,在接近衍射极限的空间频率下可以测量图像对比度。闭环光学(硬件)跟踪性能通过比较具有和不具有稳定功能的连续图像序列进行评估。尽管通常优于10μmrms或0.03度,但跟踪仍无法稳定到单锥体精度,但可以显着提高平均图像质量,并增加可通过基于软件的后处理方法成功对齐的帧数。新的光学接口允许将高分辨率成像场放置在宽视场中的任何位置,而无需重新固定对象,从而使视网膜导航更加轻松,并实现更快,更高效的AOSLO蒙太奇捕获和缝合。

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