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Digital adaptive optics based on digital lateral shearing of the computed pupil field for point scanning retinal swept source OCT

机译:基于数字侧向剪切的数字自适应光学扫描视网膜视网膜扫掠源的数字横向剪切

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摘要

A novel non-iterative digital adaptive optics technique is presented in which the wavefront error is calculated using the phase difference between the pupil field and its digital copies translated by a pixel along the horizontal and vertical direction in the pupil plane. This method provides slope data per pixel, thus can generate > 50k local slope data samples for a circular pupil of diameter 256 pixels with high accuracy and dynamic range. It offers more than 12x faster computational speed in comparison to the sub-aperture based digital adaptive optics method. Furthermore, it is independent of any system parameters, the light distribution in the pupil plane, or the intensity of the image. The technique is useful in applications such as interferometric or digital holography based microscopy, metrology, and as digital wavefront sensor in adaptive optics, where focusing of light in the sample is involved that creates a guide star or where the sample itself exhibits guide star-like structures. This technique is implemented in a point scanning swept-source OCT at 1060 nm, and a large wavefront error with a peak to valley of 20 radians and root mean square error of 0.71 waves is detected and corrected in case of a micro-beads phantom sample. Also, human photoreceptor images are recovered from aberrated retinal OCT volumes acquired at eccentricities of 2 and 2.5 degrees from the fovea in vivo.
机译:提出了一种新的非迭代数字自适应光学技术,其中使用瞳孔场与沿着瞳孔平面中的水平和垂直方向的像素之间平移的像素之间的相位差来计算波前误差。该方法提供每个像素的斜率数据,因此可以为直径256像素的圆形瞳孔产生> 50k局部斜率数据样本,具有高精度和动态范围。与基于子光圈的数字自适应光学方法相比,它提供了超过12倍的计算速度。此外,它独立于任何系统参数,光瞳平面中的光分布,或图像的强度。该技术可用于基于干涉或数字全息摄像机的显微镜,计量和作为自适应光学中的数字波前传感器的应用,其中涉及样品中的光的聚焦,从而产生导灯或样品本身展示指导星形的地方结构。该技术在1060nm的点扫描扫描源OCT中实现,并且在微珠幻像样品的情况下,检测和校正具有20个弧度的峰值的大波前误差和0.71波的均方根误差。 。此外,人的光感受器图像从在Vivo中的FOVEA在2和2.5度的偏心率上获得的偏心率的转象的视网膜OCT体积中回收。

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