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使用宽带脉冲进行后向散射系数测量的测试。

Tests of backscatter coefficient measurement using broadband pulses.

作者信息

Chen J F, Zagzebski J A, Madsen E L

机构信息

Dept. of Med. Phys., Wisconsin Univ., Madison, WI.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1993;40(5):603-7. doi: 10.1109/58.238114.

Abstract

An adaptation to a data reduction method is outlined for determining backscatter coefficients, eta, when broad-bandwidth pulses are employed. The accuracy of these eta values is assessed with well-characterized phantoms, for which backscatter coefficients based on their physical properties have been independently calculated. One phantom produces Rayleigh-like scattering, where the backscatter coefficient varies smoothly with frequency over the analysis bandwidth. A second phantom exhibits local maxima and minima in the scattering function versus frequency due to the presence of millimeter-sized graphite gel spheres in a gel background. The method was found to produce accurate results using time gate durations as small as 2 mus, although better accuracy is obtained for longer gate durations, particularly when the sample exhibits resonance peaks in backscatter versus frequency. Use of a Hamming window in place of a rectangular window extends the accuracy near the upper and lower limits of the frequency range.

摘要

本文概述了一种数据缩减方法的调整方案,用于在使用宽带脉冲时确定后向散射系数η。利用特性良好的体模评估这些η值的准确性,基于体模的物理特性已独立计算出其各自的后向散射系数。一种体模产生类似瑞利散射的情况,其中后向散射系数在分析带宽内随频率平滑变化。另一种体模由于在凝胶背景中存在毫米级石墨凝胶球,其散射函数随频率呈现局部最大值和最小值。结果发现,该方法使用短至2微秒的时间门持续时间就能产生准确的结果,不过对于更长的门持续时间能获得更高的准确性,特别是当样品在背向散射与频率关系中出现共振峰时。使用汉明窗代替矩形窗可在频率范围的上限和下限附近扩展准确性。

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