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A 3.4-mm beam diameter system for retinal imaging with OCT and adaptive optics

机译:3.4毫米光束直径系统,用于使用OCT和自适应光学元件的视网膜成像

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We present an adaptive-optics optical coherence tomography (AO-OCT) system with 3.4-mm beam diameter. A deformable mirror is used for the correction of two radial Zernike orders (defocus, vertical and oblique astigmatism). The aberrations are corrected sequentially with a Shack-Hartmann wave-front sensor and the deformable mirror. This system fills a gap between a standard clinical 1.2-mm beam diameter OCT system and a 6-mm beam diameter AO-OCT system. We also present 8° by 8° en face OCT images from a patient with macular degeneration. This system has a 25 cm by 50 cm footprint, which makes it considerably smaller to conventional 6-mm beam diameter AO-OCT system. Because of its larger field of view and smaller size, it is likely to be useful in the ophthalmic clinics for high-resolution imaging of the human eye retina.
机译:我们提出了具有3.4毫米光束直径的自适应光学光学相干断层扫描(AO-OCT)系统。可变形镜用于校正两个径向Zernike阶(散焦,垂直和倾斜像散)。使用Shack-Hartmann波前传感器和可变形反射镜依次校正像差。该系统填补了标准临床1.2毫米光束直径OCT系统和6毫米光束直径AO-OCT系统之间的空白。我们还提供了来自黄斑变性患者的8°x 8°面部OCT图像。该系统的占地面积为25厘米乘50厘米,这使其比传统的6毫米光束直径AO-OCT系统小得多。由于其较大的视野和较小的尺寸,它可能在眼科诊所中用于人眼视网膜的高分辨率成像。

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