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In vivo retinal imaging for fixational eye motion detection using a high-speed digital micromirror device (DMD)-based ophthalmoscope

机译:使用基于高速数字微镜设备(DMD)的检眼镜镜进行体内视网膜成像以进行固定眼运动检测

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摘要

Retinal motion detection with an accuracy of 0.77 arcmin corresponding to 3.7 µm on the retina is demonstrated with a novel digital micromirror device based ophthalmoscope. By generating a confocal image as a reference, eye motion could be measured from consecutively measured subsampled frames. The subsampled frames provide 7.7 millisecond snapshots of the retina without motion artifacts between the image points of the subsampled frame, distributed over the full field of view. An ophthalmoscope pattern projection speed of 130 Hz enabled a motion detection bandwidth of 65 Hz. A model eye with a scanning mirror was built to test the performance of the motion detection algorithm. Furthermore, an in vivo motion trace was obtained from a healthy volunteer. The obtained eye motion trace clearly shows the three main types of fixational eye movements. Lastly, the obtained eye motion trace was used to correct for the eye motion in consecutively obtained subsampled frames to produce an averaged confocal image correct for motion artefacts.
机译:新型的基于数字微镜设备的检眼镜证明了视网膜运动检测的精度为0.77 arcmin,相当于视网膜上的3.7 µm。通过生成共焦图像作为参考,可以从连续测量的子采样帧中测量眼睛运动。子采样帧提供了7.7毫秒的视网膜快照,而子采样帧的图像点之间没有运动伪影,分布在整个视场上。检眼镜的图案投影速度为130 Hz,可实现65 Hz的运动检测带宽。建立了带有扫描镜的模型眼,以测试运动检测算法的性能。此外,从健康志愿者获得体内运动轨迹。所获得的眼动轨迹清楚地显示了固定眼动的三种主要类型。最后,将获得的眼睛运动轨迹用于在连续获得的子采样帧中校正眼睛运动,以生成对运动伪影校正的平均共焦图像。

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