光学
自适应光学
空间光调制器
波前传感器
扫描激光检眼镜
人眼
材料科学
波前
硅上液晶
眼球运动
激光器
物理
液晶
计算机科学
人工智能
作者
Hongxin Huang,Haruyoshi Toyoda,Takashi Inoue
标识
DOI:10.7567/jjap.56.09nb02
摘要
Abstract The performance of an adaptive optics scanning laser ophthalmoscope (AO-SLO) using a liquid crystal on silicon spatial light modulator and Shack–Hartmann wavefront sensor was investigated. The system achieved high-resolution and high-contrast images of human retinas by dynamic compensation for the aberrations in the eyes. Retinal structures such as photoreceptor cells, blood vessels, and nerve fiber bundles, as well as blood flow, could be observed in vivo. We also investigated involuntary eye movements and ascertained microsaccades and drifts using both the retinal images and the aberrations recorded simultaneously. Furthermore, we measured the interframe displacement of retinal images and found that during eye drift, the displacement has a linear relationship with the residual low-order aberration. The estimated duration and cumulative displacement of the drift were within the ranges estimated by a video tracking technique. The AO-SLO would not only be used for the early detection of eye diseases, but would also offer a new approach for involuntary eye movement research.
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