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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Techniques and evaluation from a cross-platform imaging comparison of quantitative ultrasound parameters in an in vivo rodent fibroadenoma model
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Techniques and evaluation from a cross-platform imaging comparison of quantitative ultrasound parameters in an in vivo rodent fibroadenoma model

机译:跨平台成像比较体内啮齿类动物纤维腺瘤模型中定量超声参数的技术和评估

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摘要

This contribution demonstrates that quantitative ultrasound (QUS) capabilities are platform independent, using an in vivo model. Frequency-dependent attenuation estimates, backscatter coefficient, and effective scatterer diameter estimates are shown to be comparable across four different ultrasound imaging systems with varied processing techniques. The backscatter coefficient (BSC) is a fundamental material property from which several QUS parameters are estimated; therefore, consistent BSC estimates among different systems must be demonstrated. This study is an intercomparison of BSC estimates acquired by three research groups (UIUC, UW, ISU) from four in vivo spontaneous rat mammary fibroadenomas using three clinical array systems and a single-element laboratory scanner system. Because of their highly variable backscatter properties, fibroadenomas provided an extreme test case for BSC analysis, and the comparison is across systems for each tumor, not across the highly heterogeneous tumors. RF echo data spanning the 1 to 12 MHz frequency range were acquired in three dimensions from all animals using each system. Each research group processed their RF data independently, and the resulting attenuation, BSC, and effective scatterer diameter (ESD) estimates were compared. The attenuation estimates across all systems showed the same trends and consistently fit the power-law dependence on frequency. BSCs varied among the multiple slices of data acquired by each transducer, with variations between transducers being of a similar magnitude as those from slice to slice. Variation between BSC estimates was assessed via functional signal-to-noise ratios derived from backscatter data. These functional signal-to-noise ratios indicated that BSC versus frequency variations between systems ranged from negligible compared with the noise level to roughly twice the noise level. The corresponding functional analysis of variance (fANOVA) indicated statistically significant differences between BSC curves from different systems. However, root mean squared difference errors of the BSC values (in decibels) between different transducers and imaging platforms were less than half of the BSC magnitudes in most cases. Statistical comparison of the effective scatterer diameter (ESD) estimates resulted in no significant differences in estimates from three of the four transducers used for those estimates, demonstrating agreement among estimates based on the BSC. This technical advance demonstrates that these in vivo measurements can be made in a system-independent manner; the necessary step toward clinical implementation of the technology.
机译:该贡献表明,使用体内模型,定量超声(QUS)功能与平台无关。频率相关的衰减估计值,反向散射系数和有效散射体直径估计值在具有不同处理技术的四个不同超声成像系统之间具有可比性。背向散射系数(BSC)是基本的材料属性,据此可以估算几个QUS参数。因此,必须证明不同系统之间的BSC估算值一致。这项研究是对三个研究小组(UIUC,UW,ISU)使用三个临床阵列系统和单元素实验室扫描仪系统从四个体内自发大鼠乳腺纤维腺瘤中获得的BSC估计值的比较。由于纤维腺瘤的背向散射特性变化很大,因此为BSC分析提供了一个极端的测试案例,并且比较是针对每个肿瘤的系统,而不是高度异质性肿瘤。使用每种系统,从所有动物的三个维度上获取了跨越1至12 MHz频率范围的RF回波数据。每个研究小组均独立处理其RF数据,并对得到的衰减,BSC和有效散射体直径(ESD)估计值进行了比较。所有系统的衰减估计都显示出相同的趋势,并且始终符合功率定律对频率的依赖性。 BSC在每个换能器获取的多个数据切片之间变化,换能器之间的变化幅度与切片之间的变化幅度相似。 BSC估计之间的差异是通过从反向散射数据得出的功能信噪比来评估的。这些功能性信噪比表明,系统之间的BSC与频率变化的范围从与噪声水平相比可忽略不计到大约噪声水平的两倍。相应的方差泛函分析(fANOVA)表明,来自不同系统的BSC曲线之间存在统计学上的显着差异。但是,在大多数情况下,不同换能器和成像平台之间的BSC值的均方根差异误差(以分贝为单位)小于BSC幅度的一半。有效散射体直径(ESD)估计值的统计比较导致用于这些估计的四个换能器中的三个换能器的估计值之间没有显着差异,这表明基于BSC的估计值之间存在一致性。这一技术进步表明,这些体内测量可以以独立于系统的方式进行;该技术临床实施的必要步骤。

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