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首页> 外文期刊>Optics Letters >Model-based sensor-less wavefront aberration correction in optical coherence tomography
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Model-based sensor-less wavefront aberration correction in optical coherence tomography

机译:相干层析成像中基于模型的无传感器波前像差校正

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Several sensor-less wavefront aberration correction methods that correct nonlinear wavefront aberrations by maximizing the optical coherence tomography (OCT) signal are tested on an OCT setup. A conventional coordinate search method is compared to two model-based optimization methods. The first model-based method takes advantage of the well-known optimization algorithm (NEWUOA) and utilizes a quadratic model. The second model-based method ( DONE) is new and utilizes a random multidimensional Fourier-basis expansion. The model-based algorithms achieve lower wavefront errors with up to ten times fewer measurements. Furthermore, the newly proposed DONE method outperforms the NEWUOA method significantly. The DONE algorithm is tested on OCT images and shows a significantly improved image quality. (C) 2015 Optical Society of America
机译:在OCT设置上测试了几种通过最大化光学相干断层扫描(OCT)信号来校正非线性波前像差的无传感器波前像差校正方法。将常规的坐标搜索方法与两种基于模型的优化方法进行了比较。第一种基于模型的方法利用了众所周知的优化算法(NEWUOA),并利用了二次模型。第二种基于模型的方法(DONE)是新方法,它利用了随机的多维傅立叶基础展开。基于模型的算法可实现更低的波前误差,测量量最多可减少十倍。此外,新提出的DONE方法明显优于NEWUOA方法。在OCT图像上测试了DONE算法,该算法显示出显着改善的图像质量。 (C)2015年美国眼镜学会

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