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Evaluation Of Sensitivity Of Ultrasound Imaging Biomarkers Of Cervical Viscosity Based On Shear Wave Elasticity Imaging: A Simulation Study

机译:基于剪切波弹性成像的宫颈粘度超声成像生物标志物的敏感性评价:模拟研究

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Our long-term goal is to quantify changes in the viscoelastic behavior of the uterine cervix during pregnancy using Shear Wave Elasticity Imaging. In this study we compared the sensitivity of two quantitative imaging biomarkers of viscosity extracted from either a time-domain or a frequency-domain analysis of shear wave dispersion. The time-domain descriptor was the ratio R of the group speed obtained from particle velocities and particle displacements. The frequency domain descriptor was the slope S of the phase speed vs. frequency. We observed that R and S are sensitive not only to shear wave dispersion but also to the width and rate of acoustic radiation force impulse (ARFI) excitation. However, S showed the biggest contrast to changes in the tissue viscosity than R, as well as more dependence on the width and pulse duration of the ARFI. Future studies will investigate the tradeoff between contrast and noise.
机译:我们的长期目标是使用剪切波弹性成像来量化怀孕期间子宫子宫颈粘弹性的变化。在这项研究中,我们将两种定量成像生物标志物的敏感性与剪切波分散的频域分析中提取的两种定量成像生物标志物的敏感性进行了比较。时域描述符是从颗粒速度和颗粒位移获得的组速度的比率r。频域描述符是相位速度与频率的斜率S.我们观察到,R和S不仅敏感到剪切波分散,而且还敏感,而且还敏感到声辐射力脉冲(ARFI)激发的宽度和速率。然而,S显示出与组织粘度的变化比R的变化最大的对比,以及更依赖于ARFI的宽度和脉冲持续时间。未来的研究将研究对比度和噪音之间的权衡。

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