Gupta Nikhil, Swamy M N S, Plotkin Eugene
Center for Signal Processing and Communications, Department of Electrical and Computer Engineering, Concordia University, Montreal, QC H3G 1M8, Canada.
IEEE Trans Med Imaging. 2005 Jun;24(6):743-54. doi: 10.1109/TMI.2005.847401.
A novel technique for despeckling the medical ultrasound images using lossy compression is presented. The logarithm of the input image is first transformed to the multiscale wavelet domain. It is then shown that the subband coefficients of the log-transformed ultrasound image can be successfully modeled using the generalized Laplacian distribution. Based on this modeling, a simple adaptation of the zero-zone and reconstruction levels of the uniform threshold quantizer is proposed in order to achieve simultaneous despeckling and quantization. This adaptation is based on: (1) an estimate of the corrupting speckle noise level in the image; (2) the estimated statistics of the noise-free subband coefficients; and (3) the required compression rate. The Laplacian distribution is considered as a special case of the generalized Laplacian distribution and its efficacy is demonstrated for the problem under consideration. Context-based classification is also applied to the noisy coefficients to enhance the performance of the subband coder. Simulation results using a contrast detail phantom image and several real ultrasound images are presented. To validate the performance of the proposed scheme, comparison with two two-stage schemes, wherein the speckled image is first filtered and then compressed using the state-of-the-art JPEG2000 encoder, is presented. Experimental results show that the proposed scheme works better, both in terms of the signal to noise ratio and the visual quality.
提出了一种使用有损压缩对医学超声图像进行去斑的新技术。首先将输入图像的对数变换到多尺度小波域。然后表明,对数变换后的超声图像的子带系数可以使用广义拉普拉斯分布成功建模。基于此建模,提出了一种对均匀阈值量化器的零区和重构电平的简单调整,以实现同时去斑和量化。这种调整基于:(1)图像中噪声斑点噪声水平的估计;(2)无噪子带系数的估计统计量;(3)所需的压缩率。拉普拉斯分布被视为广义拉普拉斯分布的一种特殊情况,并证明了其在所考虑问题上的有效性。基于上下文的分类也应用于有噪系数,以提高子带编码器的性能。给出了使用对比细节体模图像和几幅真实超声图像的仿真结果。为了验证所提方案的性能,将其与两种两阶段方案进行比较并展示,在这两种方案中,先对有斑点的图像进行滤波,然后使用最先进的JPEG2000编码器进行压缩。实验结果表明,所提方案在信噪比和视觉质量方面都表现得更好。