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Improved parametric imaging of scatterer size estimates using angular compounding

机译:使用角度混合改进散射体尺寸估计的参数化成像

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摘要

The feasibility of estimating and imaging scatterer size using backscattered ultrasound signals and spectral analysis techniques was demonstrated previously. In many cases, size estimation, although computationally intensive, has proven to be useful for monitoring, diagnosing, and studying disease. However, a difficulty that is encountered in imaging scatterer size is the large estimator variance caused by statistical fluctuations in echo signals from random media. This paper presents an approach for reducing these statistical uncertainties. Multiple scatterer size estimates are generated for each image pixel using data acquired from several different directions. These estimates are subsequently compounded to yield a single estimate that has a reduced variance. In this feasibility study, compounding was achieved by translating a sectored-array transducer in a direction parallel to the acquired image plane. Angular compounding improved the signal-to-noise ratio (SNR) in scatterer size images. The improvement is proportional to the square root of the effective number of statistically independent views available for each image pixel.
机译:先前已经证明了使用反向散射超声信号和频谱分析技术估算和成像散射体尺寸的可行性。在许多情况下,大小估计虽然计算量大,但已证明对监视,诊断和研究疾病有用。但是,成像散射体尺寸遇到的困难是由来自随机介质的回波信号的统计波动引起的较大估计量方差。本文提出了一种减少这些统计不确定性的方法。使用从几个不同方向获取的数据为每个图像像素生成多个散射体大小估计。这些估计值随后进行复合,以产生方差减小的单个估计值。在此可行性研究中,通过在平行于采集图像平面的方向平移扇形阵列换能器来实现复合。角度混合可改善散射体尺寸图像中的信噪比(SNR)。改进与每个图像像素可用的统计独立视图有效数量的平方根成比例。

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