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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Estimating elastogram series of different resolutions using a multiresolution strain computation method
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Estimating elastogram series of different resolutions using a multiresolution strain computation method

机译:使用多分辨率应变计算方法估算不同分辨率的弹性成像序列

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摘要

The techniques used to estimate axial elastogram usually present a trade-off between elastogram resolution and noise level. It is advantageous to format a series of elastograms of various resolutions because each can provide different information about tissue stiffness. This goal is traditionally achieved by generating displacement fields using various window lengths, which increases computation load significantly. In this study, we achieve the same goal by using a multiresolution strain computation method based on Savitzky-Golay digital differentiators of different lengths, which requires calculating the displacement field only once. Simulation and experimental results show that the elastograms estimated by the proposed method are comparable to those estimated by traditional methods in terms of resolution, elastographic signal-to-noise ratio, and elastographic contrast-to-noise ratio, but the proposed method requires significantly less computational time.
机译:用于估计轴向弹性图的技术通常会在弹性图分辨率和噪声水平之间进行权衡。格式化一系列不同分辨率的弹性图是有利的,因为每个可以提供有关组织硬度的不同信息。传统上,该目标是通过使用各种窗口长度生成位移场来实现的,从而显着增加了计算负荷。在这项研究中,我们通过使用基于不同长度的Savitzky-Golay数字微分器的多分辨率应变计算方法来实现相同的目标,该方法只需计算一次位移场即可。仿真和实验结果表明,在分辨率,弹性成像信噪比和弹性对比度对比噪声方面,所提方法估计的弹性图可与传统方法估计的图像相提并论,但是所提方法所需的弹性图像明显更少计算时间。

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