首页> 外文会议>Topical Meeting on Vision Science and its Applications, Feb 11-14, 2000, Santa Fe, New Mexico >A new approach to retinal tracking for image stabilization: initial results for the scanning laser ophthalmoscope
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A new approach to retinal tracking for image stabilization: initial results for the scanning laser ophthalmoscope

机译:视网膜跟踪以实现图像稳定的新方法:扫描激光检眼镜的初步结果

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摘要

Imaging of the retina is an essential procedure in clinical diagnosis of disease, as well as in research to improve the understanding of ocular function. When the eye moves while retinal images are acquired or stimuli are presented, image quality and test accuracy suffer. Up to now, high-speed, low-cost, and direct retinal tracking technology has not been available. Research and development effort has been devoted largely to imaging enhancements, while no practical solution for the problem of retinal motion has been advanced. Physical Sciences Inc. has developed a new approach to direct retinal tracking. A fast, accurate analog retinal tracking device utilizes a very low power, eye-safe tracking beam that precisely locks onto small features of modest contrast. In the present work, a retinal tracking device was integrated into a scanning laser ophthalmoscope at the Schepens Eye Research Institute to stabilize the illumination raster on the retinas of human subjects. Stabilized fundus imaging was achieved for extended periods, despite the subjects' intentional eye movements.
机译:视网膜成像是疾病临床诊断以及提高对眼功能的了解的研究中必不可少的步骤。当获取视网膜图像或呈现刺激时眼睛运动时,图像质量和测试准确性会受到影响。到目前为止,还没有高速,低成本和直接的视网膜跟踪技术。研发工作主要致力于成像增强,而尚未提出针对视网膜运动问题的实际解决方案。 Physical Sciences Inc.开发了一种直接视网膜跟踪的新方法。一种快速,准确的模拟视网膜跟踪设备,利用非常低的功率,对眼睛安全的跟踪光束,可精确锁定适度对比度的小特征。在当前的工作中,将视网膜跟踪设备集成到Schepens眼科学研究所的扫描激光检眼镜中,以稳定人类受试者视网膜上的照明光栅。尽管受试者有意地进行眼球运动,但可以长时间稳定眼底成像。

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