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Research on ultrasonic image processing algorithm based on anisotropic diffusion

机译:基于各向异性扩散的超声图像处理算法研究

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Ultrasound imaging is an important form of medical imaging, in order to improve the clinical examination and disease diagnosis in the field of wide use. In this paper, by using the basic principle of the anisotropic diffusion model, mainly aimed at the ultrasonic image speckle noise removal algorithm is studied, the improvement schemes are put forward on the direction of diffusion control, and through the simulation of ultrasonic image, in ultrasonic image edge and noise filter both qualitative quantitative data comparison, to achieve the effectiveness of the algorithm. Experiments show that the algorithm can preserve the edge and texture details of the image while removing noise.The improved anisotropic diffusion based noise reduction algorithm for B ultrasonic image is proposed in this paper. The adaptive selection of diffusion threshold K reduces the step effect after treatment. By selecting the diffusion coefficient, each diffusion has the appropriate diffusion intensity in different regions.
机译:超声成像是一种重要的医学成像形式,以改善广泛使用领域的临床检查和疾病诊断。本文通过使用各向异性扩散模型的基本原理研究,主要针对超声波图像散热噪声去除算法,提出了扩散控制方向上的改进方案,并通过模拟超声图像,超声图像边缘和噪声滤波器既有定性定量数据比较,达到算法的有效性。实验表明,算法可以在去除噪声的同时保留图像的边缘和纹理细节。本文提出了改进的B超声图像的各向异性漫射基基降噪算法。扩散阈值K的自适应选择减少了处理后的阶梯效果。通过选择扩散系数,每个扩散在不同区域中具有适当的扩散强度。

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