He P, Greenleaf J F
J Acoust Soc Am. 1986 Feb;79(2):526-34. doi: 10.1121/1.393540.
A study of the statistics of ultrasound speckle indicates that the noise-to-signal ratio (NSR) of the echo envelope peaks (EEP) in a B scan is monotonically related to the variance of the mean power of the backscattered echoes. If it is assumed that the backscattered echoes all have the same mean power, the NSR of the EEP's in a B scan will be expected to reach a theoretical minimum value NSR0 (0.40 approximately 0.42). In practical situations, the variance of the mean power of the echoes is increased due to the presence of both attenuation (including beam spreading) and the spatial variation in the backscattering cross section (BCS) of the tissue. Accordingly, the measured value of the NSR of the EEP's is expected to be greater than the NSR0. In principle, the effects of beam pattern and the attenuation can be compensated for by system calibration and a depth-related gain function, respectively. The attenuation coefficient of the tissue may then be obtained by adjusting the gain function to minimize the NSR of the EEP's. Due to the random nature of the heterogeneity of diseased tissue, the effect of the variation in the BCS, however, cannot be compensated for by the depth-related gain function. Therefore, the minimum value of the NSR indicates the spatial variation in the BCS and may finally correlate to the disease state of the tissue.
一项关于超声散斑统计的研究表明,B 扫描中回波包络峰值(EEP)的噪声与信号比(NSR)与后向散射回波平均功率的方差呈单调相关。如果假设后向散射回波都具有相同的平均功率,那么 B 扫描中 EEP 的 NSR 预计将达到理论最小值 NSR0(约为 0.40 至 0.42)。在实际情况中,由于衰减(包括波束扩散)和组织后向散射截面(BCS)的空间变化的存在,回波平均功率的方差会增加。因此,EEP 的 NSR 测量值预计会大于 NSR0。原则上,波束模式和衰减的影响可以分别通过系统校准和深度相关增益函数来补偿。然后可以通过调整增益函数以使 EEP 的 NSR 最小化来获得组织的衰减系数。然而,由于病变组织异质性的随机性,BCS 变化的影响无法通过深度相关增益函数来补偿。因此,NSR 的最小值表明了 BCS 的空间变化,最终可能与组织的疾病状态相关。