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A multitaper approach to speckle reduction for medical ultrasound imaging

机译:用于医学超声成像的散斑减少的多兆位方法

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A typical approach to reduce unwanted speckle patterns in coherent imaging systems is to average images with different speckle realizations. Traditionally, these images have been formed by observing the target region from slightly different angles (spatial compounding) or by varying the involved frequencies (frequency compounding). In this paper we investigate a third option based on Thomson's multitaper approach to power spectrum estimation applied in the spatial domain. Our investigations, based on both real, measured ultrasound data and data from simulated scenes of point scatterers, verify that the multitaper approach can be used for speckle reduction at a rate compared to that of the more traditional method of spatial compounding. Due to the spectral concentration of the tapers, an added benefit is reduced sidelobe levels, which can yield sharper edges and more defined cyst-like structures.
机译:减少相干成像​​系统中不需要的散斑图案的典型方法是具有不同散斑实现的平均图像。传统上,通过观察目标区域从略微不同的角度(空间混合)或改变所涉及的频率(变频)来形成这些图像。在本文中,我们研究了基于汤森的多兆位方法来应用于空间域中的功率频谱估计的第三种选择。我们的研究基于真实的,测量的超声数据和来自点散射体的模拟场景的数据,验证了多扶兆方式可以以比较传统的空间复合方法相比,以速率用于散斑还原。由于锥度的光谱浓度,增加的缺口水平降低,其可以产生更锐利的边缘和更明确的囊肿状结构。

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