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通过两步图像配准减少光学相干断层扫描中的散斑

Speckle reduction in optical coherence tomography by two-step image registration.

作者信息

Zhang Hang, Li Zhongliang, Wang Xiangzhao, Zhang Xiangyang

机构信息

Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Laboratory of Information Optics and Opto-Electronic Technology, Shanghai 201800, ChinabUniversity of Chinese Academy of Sciences, Beijing 100049, China.

Jiangnan University, School of Science, Wuxi 214122, China.

出版信息

J Biomed Opt. 2015 Mar;20(3):036013. doi: 10.1117/1.JBO.20.3.036013.

Abstract

The image quality of optical coherence tomography can be severely influenced by speckle noise (i.e., signal-degrading speckle). Averaging multiple B-scans can effectively suppress speckle noise. Because of sample motion, images subject to averaging must be aligned exactly. We propose a two-step image registration scheme that combines global and local registrations for speckle reduction by the averaging of multiple B-scans. The method begins with a global registration to compensate for overall motion, which is estimated based on the rigid transformation model involving translation and rotation. Then each A-scan is aligned by cross-correlation using a graph-based algorithm, followed by a pixel subdivision method to improve smoothness in local registration. The method does not rely on any information about the retinal layer boundaries. We have applied this method to the registration of macular optical coherence tomography images. The results show the reduction of speckle noise and the enhanced visualization of layer structures. A signal-to-noise ratio improvement of nearly the square root of the number of averaged B-scans and a contrast-to-noise ratio improvement of around 11 are achieved through our method.

摘要

光学相干断层扫描的图像质量会受到散斑噪声(即降低信号的散斑)的严重影响。对多个B扫描进行平均可以有效抑制散斑噪声。由于样本运动,进行平均处理的图像必须精确对齐。我们提出了一种两步图像配准方案,该方案结合全局和局部配准,通过对多个B扫描进行平均来减少散斑。该方法首先进行全局配准以补偿整体运动,整体运动基于涉及平移和旋转的刚体变换模型进行估计。然后,使用基于图形的算法通过互相关对每个A扫描进行对齐,接着采用像素细分方法来提高局部配准的平滑度。该方法不依赖于任何关于视网膜层边界的信息。我们已将此方法应用于黄斑光学相干断层扫描图像的配准。结果表明散斑噪声减少,层结构的可视化增强。通过我们的方法,实现了信噪比提高近平均B扫描次数的平方根,对比度噪声比提高约11。

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