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用于临床光学相干断层扫描系统的有源视网膜追踪器。

Active retinal tracker for clinical optical coherence tomography systems.

作者信息

Hammer Daniel X, Ferguson R Daniel, Magill John C, Paunescu Lelia Adelina, Beaton Siobahn, Ishikawa Hiroshi, Wollstein Gadi, Schuman Joel S

机构信息

Physical Sciences Inc., 20 New England Business Center, Andover, Massachusetts 01810, USA.

出版信息

J Biomed Opt. 2005 Mar-Apr;10(2):024038. doi: 10.1117/1.1896967.

Abstract

An active, hardware-based retinal tracker is integrated with a clinical optical coherence tomography (OCT) system to investigate the effects of stabilization on acquisition of high-resolution retinal sections. The prototype retinal tracker locks onto common fundus features, detects transverse eye motion via changes in feature reflectance, and positions the OCT diagnostic beam to fixed coordinates on the retina with mirrors driven by a feedback control loop. The system is tested in a full clinical protocol on subjects with normal and glaucomatous eyes. Experimental analysis software is developed to coalign and coadd multiple fundus and OCT images and to extract quantitative information on the location of structures in the images. Tracking is highly accurate and reproducible on all but one subject, resulting in the ability to scan the same retinal location continually over long periods of time. The results show qualitative improvement in 97% of coadded OCT scans and a reduction in the variance of the position of the optic disc cup edge to less than 1 pixel (< 60 microm). The tracking system can be easily configured for use in research on ultra-high-resolution OCT systems for advanced image modalities. For example, tracking will enable very high density 3-D scans of the retina, which are susceptible to eye motion artifacts even for new high-speed systems.

摘要

一种基于硬件的有源视网膜跟踪器与临床光学相干断层扫描(OCT)系统集成,以研究稳定化对获取高分辨率视网膜切片的影响。该视网膜跟踪器原型锁定常见的眼底特征,通过特征反射率的变化检测横向眼球运动,并利用由反馈控制回路驱动的镜子将OCT诊断光束定位到视网膜上的固定坐标。该系统在针对正常眼和青光眼患者的完整临床方案中进行了测试。开发了实验分析软件,用于对齐和叠加多个眼底图像和OCT图像,并提取图像中结构位置的定量信息。除一名受试者外,跟踪在所有受试者中都具有高度准确性和可重复性,可以长时间持续扫描同一视网膜位置。结果显示,97%的叠加OCT扫描在质量上有所改善,视盘杯边缘位置的方差减小到小于1像素(<60微米)。该跟踪系统可以轻松配置,用于高级图像模式的超高分辨率OCT系统研究。例如,跟踪将实现对视网膜的非常高密度的三维扫描,即使对于新的高速系统,这种扫描也容易受到眼球运动伪影的影响。

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