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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Estimation and reduction of decorrelation effect due to tissue lateral displacement in elastography
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Estimation and reduction of decorrelation effect due to tissue lateral displacement in elastography

机译:弹性成像中由于组织横向位移引起的去相关效应的估计和降低

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In cross-correlation based elastography, the quality of the strain image is degraded by the distortion of echo waveforms due to tissue axial and lateral displacement. To study the effects of tissue lateral displacement on echo decorrelation, a tissue axial stretching model is developed and a concept called correlation signal-to-noise ratio (CSNR) is introduced to quantify the decorrelation effect due to tissue lateral displacement. A computer simulation based on the tissue stretching model is carried out to study the influence of several important elastographic parameters on echo decorrelation due to tissue lateral displacement. Finally, guided by the CSNR concept, a 2-D spatial comprehensive cross-correlation method is proposed to reduce the decorrelation noise. Results indicate that CSNR can be used as a quality indicator of elastography and the 2-D spatial comprehensive cross-correlation method can effectively reduce the decorrelation noise while slightly decreasing the lateral resolution of the strain image.
机译:在基于互相关的弹性成像中,由于组织轴向和横向位移而引起的回波波形失真会降低应变图像的质量。为了研究组织横向位移对回波解相关的影响,建立了组织轴向拉伸模型,并引入了一种称为相关信噪比(CSNR)的概念来量化由于组织横向位移引起的去相关效应。进行了基于组织拉伸模型的计算机仿真,以研究几个重要的弹性成像参数对由于组织横向位移而产生的回波解相关的影响。最后,在CSNR概念的指导下,提出了一种二维空间综合互相关方法,以减少去相关噪声。结果表明,CSNR可以用作弹性成像的质量指标,而二维空间综合互相关方法可以有效地减少去相关噪声,同时稍微降低应变图像的横向分辨率。

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