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Phase-preserving approach in denoising computed tomography medical images

机译:去噪计算机断层扫描医学图像中的保相方法

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The denoising procedure attenuates the image noise while preserving its edges and fine details. In computed tomography (CT), images are degraded by additive white Gaussian noise because of different acquisition and system errors. Due to noise existence, specialists may encounter certain difficulties to analyse or extract the useful information from noisy images. This article presents a novel implementation of the phase-preserving algorithm to denoise CT images. The phase preserving is a powerful noise reduction algorithm, but it tends to remove specific details from the processed images supposing them as noise. Therefore, a Wiener filter that uses 2D Gaussian point spread function is used along with a modified version of the latter algorithm to reduce the noise and conserve the minor medical details. The performance of the proposed approach is assessed on naturally and synthetically degraded CT images using the universal image quality indexand peak signal-to-noise ratio accuracy metrics. Results show major improvement not only in noise attenuation but also in preserving the small details.
机译:去噪过程在保留图像边缘和精细细节的同时衰减图像噪声。在计算机断层扫描(CT)中,由于不同的采集和系统误差,图像会因加性高斯白噪声而退化。由于存在噪声,专家可能会遇到某些困难,无法从嘈杂的图像中分析或提取有用的信息。本文提出了一种新颖的相位保持算法去噪CT图像的方法。相位保持是一种功能强大的降噪算法,但是它倾向于从处理后的图像中删除特定细节(假设它们是噪声)。因此,使用了使用2D高斯点扩展函数的Wiener滤波器以及后一种算法的修改版本,以减少噪声并节省次要医疗细节。使用通用图像质量指数和峰值信噪比准确度指标,对自然和合成退化的CT图像评估提出的方法的性能。结果表明,不仅在噪声衰减方面,而且在保留小细节方面都有重大改进。

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