Szabo T L, Clougherty F, Grossman C
Imaging Systems Division, Hewlett Packard, Andover, Massachusetts 01810, USA.
J Ultrasound Med. 1999 Jan;18(1):33-41. doi: 10.7863/jum.1999.18.1.33.
Water can generate extreme waveform distortion compared to tissue, as indicated by the Goldberg number for water, which is 20 times larger than that of tissue at typical diagnostic ultrasound levels. This result was demonstrated by using tofu as a tissue mimicking material. By adjusting transducer voltage drive levels in water to match the peak rarefactional pressures in water to those of waveforms in tofu, a close correspondence was obtained for the peak compressional pressure and time average intensity with depth. A poorer correspondence was found by comparing tofu waveforms with water waveforms that were compensated for broadband attenuation and driven at the same voltage level as tofu. A simplified broadband derating factor, allowing for band-width adjustment, was shown to be more accurate than the standard monochromatic derating. Several new indicators for quantifying the degree of observed nonlinearity are suggested: a field based nonlinearity parameter, a peak pressure ratio pc/pr, and a second harmonic to fundamental frequency spectral ratio. These indicators may have the potential for more consistent characterization of nonlinear relationships among output parameters and drive levels.
与组织相比,水会产生极端的波形失真,如水中的戈德堡数所示,在典型的诊断超声水平下,该数值比组织的戈德堡数大20倍。使用豆腐作为组织模拟材料证明了这一结果。通过调整水中换能器的电压驱动水平,使水中的峰值稀疏压力与豆腐中的波形峰值稀疏压力相匹配,得到了峰值压缩压力和时间平均强度随深度的密切对应关系。将豆腐波形与经宽带衰减补偿并以与豆腐相同电压水平驱动的水波形进行比较时,发现对应关系较差。一种允许进行带宽调整的简化宽带降额因子比标准单色降额更准确。提出了几个用于量化观察到的非线性程度的新指标:基于场的非线性参数、峰值压力比pc/pr以及二次谐波与基频的频谱比。这些指标可能有潜力更一致地表征输出参数和驱动水平之间的非线性关系。