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通过稀疏表示实现的散斑抑制,用于透过混浊介质的宽场成像。

Speckle suppression via sparse representation for wide-field imaging through turbid media.

作者信息

Jang Hwanchol, Yoon Changhyeong, Chung Euiheon, Choi Wonshik, Lee Heung-No

出版信息

Opt Express. 2014 Jun 30;22(13):16619-28. doi: 10.1364/OE.22.016619.

Abstract

Speckle suppression is one of the most important tasks in the image transmission through turbid media. Insufficient speckle suppression requires an additional procedure such as temporal ensemble averaging over multiple exposures. In this paper, we consider the image recovery process based on the so-called transmission matrix (TM) of turbid media for the image transmission through the media. We show that the speckle left unremoved in the TM-based image recovery can be suppressed effectively via sparse representation (SR). SR is a relatively new signal reconstruction framework which works well even for ill-conditioned problems. This is the first study to show the benefit of using the SR as compared to the phase conjugation (PC) a de facto standard method to date for TM-based imaging through turbid media including a live cell through tissue slice.

摘要

散斑抑制是通过浑浊介质进行图像传输时最重要的任务之一。散斑抑制不足需要额外的处理,例如对多次曝光进行时间上的总体平均。在本文中,我们考虑基于浑浊介质的所谓传输矩阵(TM)的图像恢复过程,用于通过该介质的图像传输。我们表明,在基于TM的图像恢复中未去除的散斑可以通过稀疏表示(SR)有效地抑制。SR是一种相对较新的信号重建框架,即使对于病态问题也能很好地工作。这是第一项表明与相位共轭(PC)相比使用SR的益处的研究,PC是迄今为止用于通过包括活细胞通过组织切片在内的浑浊介质进行基于TM成像的事实上的标准方法。

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