首页> 外文会议>International Conference on Optical Instruments and Technology;OIT 2011 >High-performance adaptive optics system with long-term stability using liquid-crystal-on-silicon spatial light modulator for high- resolution retinal imaging
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High-performance adaptive optics system with long-term stability using liquid-crystal-on-silicon spatial light modulator for high- resolution retinal imaging

机译:使用硅上液晶空间光调制器的高分辨率稳定成像的高性能自适应光学系统,具有长期稳定性

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An adaptive optics scanning laser ophthalmoscope (AO-SLO) using a liquid-crystal spatial light modulator was developed. For routine clinical applications, long-term stability of the AO system is very important because unavoidable eye movement may degrade the instrument's performance. We studied the long-term performance of the aberration correction with healthy human eyes. Retinal image acquisition and AO data collection were performed simultaneously for periods of several minutes. We confirmed that, for more than 90 % of the periods, the root-mean-square errors of residual wavefront were below the Marechal criterion. Drifts and microsaccades of fixational eye movement were examined using retinal images and residual aberrations. The results showed significant correlation between the transverse shift of retinal image and the low-order residual wavefront aberration during the drifts.
机译:开发了一种使用液晶空间光调制器的自适应光学扫描激光检眼镜(AO-SLO)。对于常规临床应用,AO系统的长期稳定性非常重要,因为不可避免的眼球移动可能会降低仪器的性能。我们用健康的人眼研究了像差校正的长期性能。在几分钟内同时进行视网膜图像采集和AO数据收集。我们确认,在超过90%的周期中,残留波阵面的均方根误差均低于Marechal准则。使用视网膜图像和残余像差检查固定眼动的漂移和微扫视。结果表明,在漂移过程中,视网膜图像的横向偏移与低阶残留波前像差之间存在显着相关性。

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