Wagner R F, Insana M F, Brown D G
J Opt Soc Am A. 1987 May;4(5):910-22. doi: 10.1364/josaa.4.000910.
Both radio-frequency (rf) and envelope-detected signal analyses have lead to successful tissue discrimination in medical ultrasound. The extrapolation from tissue discrimination to a description of the tissue structure requires an analysis of the statistics of complex signals. To that end, first- and second-order statistics of complex random signals are reviewed, and an example is taken from rf signal analysis of the backscattered echoes from diffuse scatterers. In this case the scattering form factor of small scatterers can be easily separated from long-range structure and corrected for the transducer characteristics, thereby yielding an instrument-independent tissue signature. The statistics of the more economical envelope- and square-law-detected signals are derived next and found to be almost identical when normalized autocorrelation functions are used. Of the two nonlinear methods of detection, the square-law or intensity scheme gives rise to statistics that are more transparent to physical insight. Moreover, an analysis of the intensity-correlation structure indicates that the contributions to the total echo signal from the diffuse scatter and from the steady and variable components of coherent scatter can still be separated and used for tissue characterization. However, this analysis is not system independent. Finally, the statistical methods of this paper may be applied directly to envelope signals in nuclear-magnetic-resonance imaging because of the approximate equivalence of second-order statistics for magnitude and intensity.
射频(rf)分析和包络检波信号分析均已在医学超声中成功实现组织鉴别。从组织鉴别推断到组织结构描述需要对复信号的统计特性进行分析。为此,回顾了复随机信号的一阶和二阶统计特性,并从漫散射体后向散射回波的射频信号分析中选取了一个示例。在这种情况下,小散射体的散射形状因子能够轻易地与远距离结构分离,并针对换能器特性进行校正,从而产生与仪器无关的组织特征。接下来推导了更为经济的包络检波信号和平方律检波信号的统计特性,发现当使用归一化自相关函数时,二者几乎相同。在两种非线性检测方法中,平方律或强度方案产生的统计特性在物理洞察方面更为直观。此外,对强度相关结构的分析表明,来自漫散射以及相干散射的稳定和可变分量对总回波信号的贡献仍可分离并用于组织表征。然而,这种分析并非与系统无关。最后,由于幅度和强度的二阶统计特性近似等效,本文的统计方法可直接应用于核磁共振成像中的包络信号。