A Quantitative Ultrasound Phantom Calibration Study: Effect of Depth on Attenuation and Backscatter Properties.

Salman Jubair Jim, Alex Devlin, Farah Deeba
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Abstract

Calibration using a reference phantom is a crucial first step in Quantitative Ultrasound (QUS) parameter estimation. In this paper, we have designed a phantom study to analyze the effect of depth of the corresponding region-of-interest (ROI) and envelope SNR deviation on the QUS estimation bias. Our results indicate that QUS estimation bias is more pronounced when the attenuation of the sample under study is different from the attenuation of the reference phantom. For such cases, the increase in QUS estimation bias follows a power law with the depth of the ROI. Our results also found that we can use Envelope SNR deviation to obtain a usable range of calibration depth, irrespective of the attenuation difference between sample and reference.

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超声模体定量校准研究:深度对衰减和后向散射特性的影响。
使用参考模体进行校准是定量超声(QUS)参数估计中至关重要的第一步。在本文中,我们设计了一个模拟研究来分析相应感兴趣区域(ROI)深度和包络信噪比偏差对QUS估计偏差的影响。我们的研究结果表明,当被研究样品的衰减与参考模体的衰减不同时,QUS估计偏差更为明显。对于这种情况,QUS估计偏差的增加遵循ROI深度的幂律。我们的结果还发现,无论样本和参考之间的衰减差异如何,我们都可以使用包络信噪比偏差来获得可用的校准深度范围。
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