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High speed adaptive optics ophthalmoscopy with an anamorphic point spread function

机译:具有变形点扩展功能的高速自适应光学检眼镜

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摘要

Retinal imaging working with a line scan mechanism and a line camera has the potential to image the eye with a near-confocal performance at the high frame rate, but this regime has difficulty to collect sufficient imaging light while adequately digitize the optical resolution in adaptive optics imaging. To meet this challenge, we have developed an adaptive optics line scan ophthalmoscope with an anamorphic point spread function. The instrument uses a high-speed line camera to acquire the retinal image and act as a confocal gate. Meanwhile, it employs a digital micro-mirror device to modulate the imaging light into a line of point sources illuminating the retina. The anamorphic mechanism ensures adequate digitization of the optical resolution and increases light collecting efficiency. We demonstrate imaging of the living human retina with cellular level resolution at a frame rate of 200 frames/second (FPS) with a digitization of 512 × 512 pixels over a field of view of 1.2° × 1.2°. We have assessed cone photoreceptor structure in images acquired at 100, 200, and 800 FPS in 2 normal human subjects, and confirmed that retinal images acquired at high speed rendered macular cone mosaic with improved measurement repeatability.
机译:使用线扫描机制和线相机工作的视网膜成像具有在高帧频下以近焦性能对眼睛成像的潜力,但是这种方式难以收集足够的成像光,同时又无法将自适应光学系统中的光学分辨率充分数字化成像。为了应对这一挑战,我们开发了具有变形点扩展功能的自适应光学线扫描检眼镜。该仪器使用高速线相机采集视网膜图像并充当共焦门。同时,它采用数字微镜设备将成像光调制为照明视网膜的点源线。变形机制可确保光学分辨率得到足够的数字化并提高光收集效率。我们演示了在细胞水平分辨率下以200帧/秒(FPS)的帧速率对活人视网膜成像,并在1.2°×1.2°的视野内以512×512像素的数字化。我们已经在2位正常人中以100、200和800 FPS采集的图像评估了锥体感光体的结构,并确认以高速获取的视网膜图像呈现出具有改善的测量可重复性的黄斑锥体镶嵌。

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