Department of Medical Physics, University of Wisconsin, Madison, WI, USA.
Ultrason Imaging. 2012 Oct;34(4):209-21. doi: 10.1177/0161734612464451.
Backscatter and attenuation coefficient estimates are needed in many quantitative ultrasound strategies. In clinical applications, these parameters may not be easily obtained because of variations in scattering by tissues overlying a region of interest (ROI). The goal of this study is to assess the accuracy of backscatter and attenuation estimates for regions distal to nonuniform layers of tissue-mimicking materials. In addition, this work compares results of these estimates for "layered" phantoms scanned using different clinical ultrasound machines. Two tissue-mimicking phantoms were constructed, each exhibiting depth-dependent variations in attenuation or backscatter. The phantoms were scanned with three ultrasound imaging systems, acquiring radio frequency echo data for offline analysis. The attenuation coefficient and the backscatter coefficient (BSC) for sections of the phantoms were estimated using the reference phantom method. Properties of each layer were also measured with laboratory techniques on test samples manufactured during the construction of the phantom. Estimates of the attenuation coefficient versus frequency slope, α(0), using backscatter data from the different systems agreed to within 0.24 dB/cm-MHz. Bias in the α(0) estimates varied with the location of the ROI. BSC estimates for phantom sections whose locations ranged from 0 to 7 cm from the transducer agreed among the different systems and with theoretical predictions, with a mean bias error of 1.01 dB over the used bandwidths. This study demonstrates that attenuation and BSCs can be accurately estimated in layered inhomogeneous media using pulse-echo data from clinical imaging systems.
在许多定量超声策略中都需要反向散射和衰减系数估计。在临床应用中,由于感兴趣区域 (ROI) 上方组织的散射变化,这些参数可能不容易获得。本研究的目的是评估对非均匀组织模拟材料层远侧区域的反向散射和衰减估计的准确性。此外,这项工作还比较了使用不同临床超声设备扫描“分层”体模时这些估计结果。构建了两个组织模拟体模,每个体模都表现出衰减或反向散射随深度的变化。使用三个超声成像系统扫描体模,获取射频回波数据进行离线分析。使用参考体模法估计体模各部分的衰减系数和反向散射系数 (BSC)。使用在体模制造过程中制造的测试样品的实验室技术还测量了每个层的特性。使用来自不同系统的反向散射数据对衰减系数与频率斜率 α(0) 的估计值在 0.24 dB/cm-MHz 内一致。α(0) 估计值的偏差随 ROI 位置的变化而变化。位于换能器 0 至 7cm 范围内的体模部分的 BSC 估计值在不同系统之间以及与理论预测值一致,在使用的带宽上平均偏差误差为 1.01dB。这项研究表明,使用临床成像系统的脉冲回波数据可以准确估计分层非均匀介质中的衰减和 BSCs。