The Ohio State University, College of Optometry, Columbus, Ohio, United States.
The Ohio State University, Department of Ophthalmology and Vision Science, Havener Eye Institute, Co, United States.
J Biomed Opt. 2018 Mar;23(3):1-15. doi: 10.1117/1.JBO.23.3.036003.
We have designed and implemented a dual-mode adaptive optics (AO) imaging system that combines spectral domain optical coherence tomography (OCT) and scanning laser ophthalmoscopy (SLO) for in vivo imaging of the human retina. The system simultaneously acquires SLO frames and OCT B-scans at 60 Hz with an OCT volume acquisition time of 4.2 s. Transverse eye motion measured from the SLO is used to register the OCT B-scans to generate three-dimensional (3-D) volumes. Key optical design considerations include: minimizing system aberrations through the use of off-axis relay telescopes, conjugate pupil plane requirements, and the use of dichroic beam splitters to separate and recombine the OCT and SLO beams around the nonshared horizontal scanning mirrors. To demonstrate system performance, AO-OCT-SLO images and measurements are taken from three normal human subjects ranging in retinal eccentricity from the fovea out to 15-deg temporal and 20-deg superior. Also presented are en face OCT projections generated from the registered 3-D volumes. The ability to acquire high-resolution 3-D images of the human retina in the midperiphery and beyond has clinical importance in diseases, such as retinitis pigmentosa and cone-rod dystrophy.
我们设计并实现了一种双模自适应光学(AO)成像系统,该系统将光谱域光学相干断层扫描(OCT)和扫描激光检眼镜(SLO)结合起来,用于对人眼视网膜进行体内成像。该系统以 60 Hz 的速度同时采集 SLO 帧和 OCT B 扫描,OCT 体积采集时间为 4.2 s。从 SLO 测量的横向眼球运动用于将 OCT B 扫描注册到生成三维(3-D)体积中。关键的光学设计考虑因素包括:通过使用离轴中继望远镜、共轭瞳孔平面要求以及使用二向色分束器来分离和重新组合 OCT 和 SLO 光束来最小化系统像差,这些光束围绕非共享水平扫描镜。为了演示系统性能,从三个正常的人类受试者中获取了 AO-OCT-SLO 图像和测量结果,这些受试者的视网膜偏心度从中央凹到 15 度颞侧和 20 度上侧不等。还呈现了从注册的 3-D 体积生成的共面 OCT 投影。在中周边和更远的距离获得人眼视网膜的高分辨率 3-D 图像的能力在疾病中具有重要的临床意义,例如色素性视网膜炎和锥杆营养不良。