Retinal Motion and Microvascular Pulsation Measurements from SLO Image Sequences

V. Aitken
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引用次数: 1

Abstract

Scanning laser ophthalmoscopes (SLOs) provide noninvasive image sequences of the retina with high temporal and spatial resolution. This paper describes recent methods and results for accurate saccade and drift motion estimation of the eye. The proposed method exploits the scanning nature of the SLO and assumes direct access to each scan line as it is received. This approach allows high temporal resolution in estimation of saccadic motion that is used in prediction of landmark motion for extraction of translational and rotational estimates due to drift. The high accuracy achieved leads to the capability to track specific vascular structures of interest during the image sequence. We demonstrate applications in measurement of the amplitude of the venous pulse, often observed in vessels at or near the edge of the optical disk, relative to distance along the vessel. Results are shown for both simulated and real SLO image sequences
从SLO图像序列测量视网膜运动和微血管脉动
扫描激光检眼镜(slo)提供视网膜的无创图像序列,具有高的时间和空间分辨率。本文介绍了眼球的准确扫视运动和漂移运动估计的最新方法和结果。所提出的方法利用了SLO的扫描特性,并假设在接收时直接访问每个扫描线。这种方法允许高时间分辨率的跳跃运动估计,用于预测地标运动提取平移和旋转估计由于漂移。在图像序列中实现的高精度导致能够跟踪感兴趣的特定血管结构。我们演示了测量静脉脉冲振幅的应用,通常在光盘边缘或附近的血管中观察到,相对于沿着血管的距离。结果显示了模拟和真实的SLO图像序列
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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