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首页> 外文期刊>International Journal of Engineering and Technology >Ultrasound Tomography in Circular Measurement Configuration using Nonlinear Reconstruction Method
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Ultrasound Tomography in Circular Measurement Configuration using Nonlinear Reconstruction Method

机译:使用非线性重建方法的圆形测量配置中的超声层析成像

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Ultrasound tomography offers the potential for detecting of very small tumors whose sizes are smaller than the wavelength of the incident pressure wave without ionizing radiation. Based on inverse scattering technique, this imaging modality uses some material properties such as sound contrast and attenuation in order to detect small objects. One of the most commonly used methods in ultrasound tomography is the Distorted Born Iterative Method (DBIM). The compressed sensing technique was applied in the DBIM as a promising approach for the image reconstruction quality improvement. Nevertheless, the random measurement configuration of transducers in this method is very difficult to set up in practice. Therefore, in this paper, we take advantages of simpler sparse uniform measurement configuration set-up of transducers and high-quality image reconstruction of l1 non-linear regularization in sparse scattering domain. The simulation results demonstrate the high performance of the proposed approach in terms of tremendously reduced total runtime and normalized error.
机译:超声层析成像技术有潜力检测尺寸小于入射压力波波长的很小的肿瘤,而无需电离辐射。基于逆散射技术,此成像模式使用一些材料属性(例如声音对比度和衰减)来检测小物体。超声断层扫描中最常用的方法之一是扭曲变形迭代法(DBIM)。压缩传感技术被应用在DBIM中,作为改善图像重建质量的一种有前途的方法。但是,在实践中很难建立这种方法中传感器的随机测量配置。因此,在本文中,我们利用了更简单的换能器稀疏均匀测量配置设置以及稀疏散射域中l1非线性正则化的高质量图像重建的优势。仿真结果表明,该方法在减少总运行时间和标准化误差方面具有很高的性能。

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