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Performance assessment of a pupil tracking system for adaptive optics retinal imaging

机译:自适应光学视网膜成像的瞳孔跟踪系统性能评估

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Adaptive Optics (AO) is particularly suitable for correction of aberrations that change over time - a necessity for high resolution imaging of the retina. The rapidly changing aberrations originating from eye movements require wavefront sensors (WFS) with high repetition rates. Our approach is enhancing aberration correction by integrating a Pupil Tracking System (PTS) into the AO loop of the retinal imaging system. In this study we assessed the performance of the PTS developed for this purpose. Tests have demonstrated that the device achieves an accuracy of <15 μm in a ±2 mm range of eye movements with a standard deviation <10 μm. PTS can tolerate ±5 mm defocus with an increase of 4 μm in mean standard deviation. In vivo measurements done with temporarily paralyzed pupils have resulted in a precision of approximately 13 μm.
机译:自适应光学器件(AO)特别适用于校正随时间变化的像差 - 这是视网膜高分辨率成像的必要性。源自眼球运动的快速变化的像差需要具有高重复率的波前传感器(WFS)。我们的方法是通过将瞳孔跟踪系统(PTS)集成到视网膜成像系统的AO环路中来提高像差校正。在这项研究中,我们评估了为此目的开发的PTS的性能。测试已经证明,该装置在具有标准偏差<10μm的±2mm的眼球运动范围内实现<15μm的精度。 PTS可以耐受±5毫米的散焦,在平均标准偏差增加4μm。在用临时瘫痪的瞳孔完成的体内测量中,使得精度约为13μm。

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