An Unbiased Tissue Attenuation Coefficient Estimator Using Microbubble Echoes with Harmonic Ratio Compensation

Sheng-Kai Tsao, J. Tsao
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引用次数: 1

Abstract

For the tissue attenuation coefficient (TAC) estimator proposed in our previous paper [5], to have unbiased estimate of the TAC of separation tissue between two vessels, it needs bubbles in these two vessels have identical statistical properties, which can be achieved only when these two vessels have same diameter and blood pressure. To release this limitation, a compensation technique is proposed to suppress the bias. In this paper, follow Greenleaf's work, we introduce a parameter named harmonic ratio (HR), which is the ratio of two second-harmonic signals, for bias suppression. This method needs to use dual-frequency excitation to produce two harmonics. After applying HR to estimate TAC, it is shown that the effect of bubble number can be compensated. In the experimental work, we make two vessels with different bubble concentrations such that the statistical properties of bubble echoes are different to cause severe bias on TAC estimates, then it is shown that the estimates using HR can be kept unbiased.
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带谐波比补偿的微泡回波无偏组织衰减系数估计
对于我们在之前的论文[5]中提出的组织衰减系数(tissue attenuation coefficient, TAC)估计器,要对两根血管间分离组织的TAC进行无偏估计,需要两根血管中的气泡具有相同的统计性质,而这只有在两根血管的直径和血压相同的情况下才能实现。为了消除这一限制,提出了一种补偿技术来抑制偏置。本文在Greenleaf的基础上,引入谐波比(HR)参数,即两个二次谐波信号的比值,用于抑制偏置。这种方法需要使用双频激励产生两个谐波。应用HR估计TAC后,表明气泡数的影响是可以补偿的。在实验工作中,我们制作了两个气泡浓度不同的容器,使得气泡回波的统计特性不同,对TAC估计造成了严重的偏差,然后证明了使用HR估计可以保持无偏。
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