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首页> 外文期刊>Ultrasound in Medicine and Biology >BAS-RELIEF MAP USING TEXTURE ANALYSIS WITH APPLICATION TO LIVE ENHANCEMENT OF ULTRASOUND IMAGES
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BAS-RELIEF MAP USING TEXTURE ANALYSIS WITH APPLICATION TO LIVE ENHANCEMENT OF ULTRASOUND IMAGES

机译:基于纹理分析的BAS缓解图及其在实时增强超声图像中的应用

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For ultrasound imaging, speckle is one of the most important factors in the degradation of contrast resolution because it masks meaningful texture and has the potential to interfere with diagnosis. It is expected that researchers would explore appropriate ways to reduce the speckle noise, to find the edges of structures and enhance weak borders between different organs in ultrasound imaging. Inspired by the principle of differential interference contrast microscopy, a "bas-relief map" is proposed that depicts the texture structure of ultrasound images. Based on a bas-relief map, an adaptive bas-relief filter was developed for ultrafast despeckling. Subsequently, an edge map was introduced to enhance the edges of images in real time. The holistic bas-relief map approach has been used experimentally with synthetic phantoms and digital ultrasound B-scan images of liver, kidney and gallbladder. Based on the visual inspection and the performance metrics of the despeckled images, it was found that the bas-relief map approach is capable of effectively reducing the speckle while significantly enhancing contrast and tissue boundaries for ultrasonic images, and its speckle reduction ability is comparable to that of Kuan, Lee and Frost filters. Meanwhile, the proposed technique could preserve more intra-region details compared with the popular speckle reducing anisotropic diffusion technique and more effectively enhance edges. In addition, the adaptive bas-relief filter was much less time consuming than the Kuan, Lee and Frost filter and speckle reducing anisotropic diffusion techniques. The bas-relief map strategy is effective for speckle reduction and live enhancement of ultrasound images, and can provide a valuable tool for clinical diagnosis. (C) 2015 World Federation for Ultrasound in Medicine & Biology.
机译:对于超声成像,散斑是对比度分辨率降低的最重要因素之一,因为它掩盖了有意义的纹理,并且有可能干扰诊断。预计研究人员将探索适当的方法来减少斑点噪声,找到结构的边缘并增强超声成像中不同器官之间的弱边界。受微分干涉对比显微镜原理的启发,提出了“浮雕图”,描绘了超声图像的纹理结构。基于浮雕图,开发了一种自适应浮雕滤波器,用于超快速去斑。随后,引入了边缘图以实时增强图像的边缘。整体浅浮雕图方法已在实验中用于合成体模和肝脏,肾脏和胆囊的数字B超扫描图像。基于视觉检查和去斑点图像的性能指标,发现浅浮雕图方法能够有效减少斑点,同时显着增强超声图像的对比度和组织边界,并且其斑点减少能力与Kuan,Lee和Frost过滤器的过滤器。同时,与流行的减少斑点各向异性扩散技术相比,所提出的技术可以保留更多的区域内细节,并且可以更有效地增强边缘。另外,自适应的浅浮雕滤波器比Kuan,Lee和Frost滤波器以及减少斑点的各向异性扩散技术要少得多的时间。浅浮雕图策略可有效减少超声图像的斑点和实时增强效果,并可为临床诊断提供有价值的工具。 (C)2015年世界医学和生物学超声联合会。

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