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Optical Design Considerations when Imaging the Fundus with anAdaptive-Optics Correction

机译:使用自适应光学校正对眼底成像时的光学设计注意事项

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Adaptive Optics (AO) technology has been used in confocal scanning laser ophthalmoscopes (CSLO) which are analogous to confocal scanning laser microscopes (CSLM) with advantages of real-time imaging, increased image contrast, a resistance to image degradation by scattered light, and improved optical sectioning. With AO, the instrument-eye system can have low enough aberrations for the optical quality to be limited primarily by diffraction. Diffraction-limited, high resolution imaging would be beneficial in the understanding and early detection of eye diseases such as diabetic retinopathy. However, to maintain diffraction-limited imaging, sufficient pixel sampling over the field of view is required, resulting in the need for increased data acquisition rates for larger fields. Imaging over smaller fields may be a disadvantage with clinical subjects because of fixation instability and the need to examine larger areas of the retina. Reduction in field size also reduces the amount of light sampled per pixel, increasing photon noise. For these reasons, we considered an instrument design with a larger field of view. When choosing scanners to be used in an AOCSLO, the ideal frame rate should be above the flicker fusion rate for the human observer and would also allow user control of targets projected onto the retina. In our AOCSLO design, we have studied the tradeoffs between field size, frame rate and factors affecting resolution. We will outline optical approaches to overcome some of these tradeoffs and still allow detection of the earliest changes in the fundus in diabetic retinopathy.
机译:自适应光学(AO)技术已被用于共聚焦扫描激光眼力(CSLO),其类似于共聚焦扫描激光显微镜(CSLM),具有实时成像的优点,增加图像对比度,通过散射光对图像劣化的抗性,以及改进的光学切片。通过AO,仪器 - 眼系可以具有足够低的像差,用于光学质量主要通过衍射限制。衍射限制,高分辨率成像将有益于理解和早期检测糖尿病视网膜病变的眼病。然而,为了保持衍射限制的成像,需要在视野上采样足够的像素采样,从而需要增加更大领域的数据采集率。由于固定不稳定性,并且需要检查视网膜的较大区域,对较小字段的成像可能是临床受试者的缺点。场大小的减小还减少了每像素采样的光量,增加光子噪声。由于这些原因,我们考虑了一个具有更大视野的仪器设计。选择要在AOCSLO中使用的扫描仪时,理想的帧速率应高于人类观察者的闪烁融合速率,也可以允许用户控制投影到视网膜上的目标。在我们的AOCSLO设计中,我们研究了影响分辨率的场尺寸,帧率和因素之间的权衡。我们将概述光学方法来克服一些这些权衡,仍然允许检测糖尿病视网膜病变口的最早变化。

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