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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Potential contrast improvement in ultrasound pulse inversion imaging using EMD and EEMD
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Potential contrast improvement in ultrasound pulse inversion imaging using EMD and EEMD

机译:使用EMD和EEMD的超声脉冲反转成像中潜在的对比度改善

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Ultrasound nonlinear imaging using microbubble- based contrast agents has been widely investigated. Nonetheless, its contrast is often reduced by the nonlinearity of acoustic wave propagation in tissue. In this paper, we explore the use of empirical mode decomposition (EMD) and ensemble empirical mode decomposition (EEMD) in the Hilbert-Huang transform (HHT) for possible contrast improvement. The HHT is designed for analyzing nonlinear and nonstationary data, whereas EMD is a method associated with the HHT that allows decomposition of data into a finite number of intrinsic modes. The hypothesis is that the nonlinear signal from microbubbles and the tissue nonlinear signal can be better differentiated with EMD and EEMD, thus making contrast improvement possible. Specifically, we tested this method on pulse-inversion nonlinear imaging, which is generally regarded as one of the most effective nonlinear imaging methods. The results show that the contrast-to-tissue ratios at the fundamental and second-harmonic frequencies were improved by 10.2 and 4.3 dB, respectively, after EEMD. Nonetheless, image artifacts also appeared, and hence further investigation is needed before EMD and EEMD can be applied in practical applications of ultrasound nonlinear imaging.
机译:使用基于微泡的造影剂进行的超声非线性成像已得到广泛研究。但是,其对比度通常会因声波在组织中传播的非线性而降低。在本文中,我们探索在Hilbert-Huang变换(HHT)中使用经验模式分解(EMD)和整体经验模式分解(EEMD)来改善对比度的方法。 HHT设计用于分析非线性和非平稳数据,而EMD是与HHT相关的一种方法,它允许将数据分解为有限数量的固有模式。假设是通过EMD和EEMD可以更好地区分来自微气泡的非线性信号和组织非线性信号,从而使对比度改善成为可能。具体而言,我们在脉冲反转非线性成像中测试了该方法,该方法通常被认为是最有效的非线性成像方法之一。结果表明,EEMD后,基波和次谐波频率的对比度/组织比分别提高了10.2和4.3 dB。尽管如此,图像伪影也出现了,因此在将EMD和EEMD应用于超声非线性成像的实际应用之前,需要进一步的研究。

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