Yao L X, Zagzebski J A, Madsen E L
Department of Medical Physics, University of Wisconsin-Madison 53706.
Ultrason Imaging. 1990 Jan;12(1):58-70. doi: 10.1177/016173469001200105.
In previous work, we demonstrated that accurate backscatter coefficient measurements are obtained with a data reduction method that explicitly accounts for experimental factors involved in recording echo data. An alternative, relative processing method for determining the backscatter coefficient and the attenuation coefficient is presented here. This method involves comparison of echo data from a sample with data recorded from a reference phantom whose backscatter and attenuation coefficients are known. A time domain processing technique is used to extract depth and frequency dependent signal ratios for the sample and the reference phantom. The attenuation coefficient and backscatter coefficient of the sample are found from these ratios. The method is tested using tissue-mimicking phantoms with known scattering and attenuation properties.
在之前的工作中,我们证明了通过一种数据缩减方法能够获得准确的背向散射系数测量值,该方法明确考虑了记录回波数据时涉及的实验因素。本文提出了一种用于确定背向散射系数和衰减系数的替代相对处理方法。此方法涉及将来自样品的回波数据与从参考体模记录的数据进行比较,该参考体模的背向散射和衰减系数是已知的。使用时域处理技术来提取样品和参考体模的深度和频率相关信号比。从这些比值中得出样品的衰减系数和背向散射系数。使用具有已知散射和衰减特性的仿组织体模对该方法进行了测试。