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Speckle noise reduction of optical coherence tomography images with a wavelet transform

机译:用小波变换减少光学相干断层扫描图像的斑点噪声

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Optical coherence tomography (OCT) is a technique to investigate the microstructure of biological tissue non-invasively. OCT uses a low-coherence interferometry technique, and so the quality of OCT images is degraded by speckle noise which is inherent in coherent imaging. To remove the speckle noise, many methods have been proposed including hardware- and software-based methods. The latter approaches are flexible and easy to implement, and so many methods such as median filter, Wiener filter, and wavelet filter have been proposed. Of these, use of a wavelet filter is a powerful method to reduce the speckle noise, and this filter is often used in ultrasound images. The model of the speckle noise has a multiplicative nature, and conventional filtering methods are somewhat ineffective against this speckle noise. In 2003, we have developed a noise reduction method using a wavelet transform for radiographic images. In this paper, we applied the method to OCT images. The results of simulations showed that the speckle noise was reasonably reduced. And if we had only four frame images, the signal to noise ratio (S/N) was equivalent to that of averaged image using 32 frames. In addition, when we increased the number of processed images, we achieved the S/N of 24-25 dB.
机译:光学相干断层扫描(OCT)是一种无创地研究生物组织的微观结构的技术。 OCT使用低相干干涉测量技术,因此OCT图像的质量会因相干成像中固有的斑点噪声而降低。为了消除斑点噪声,已经提出了许多方法,包括基于硬件和软件的方法。后一种方法灵活且易于实现,因此提出了许多方法,例如中值滤波器,维纳滤波器和小波滤波器。其中,使用小波滤波器是减少斑点噪声的有效方法,并且该滤波器通常用于超声图像中。斑点噪声的模型具有乘法性质,并且常规的滤波方法在对抗该斑点噪声方面有些无效。 2003年,我们开发了一种基于小波变换的放射线图像降噪方法。在本文中,我们将该方法应用于OCT图像。仿真结果表明,斑点噪声得到了合理的降低。如果我们只有四个帧图像,则信噪比(S / N)等于使用32帧的平均图像的信噪比。另外,当我们增加处理图像的数量时,我们获得了24-25 dB的信噪比。

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