Ng G C, Freiburger P D, Walker W F, Trahey G E
Dept. of Biomed. Eng., Duke Univ., Durham, NC.
IEEE Trans Ultrason Ferroelectr Freq Control. 1997;44(1):140-51. doi: 10.1109/58.585209.
Acoustic velocity inhomogeneities in tissue result in aberration of ultrasound images. These aberrations can be modeled as a near field thin phase screen or as a distributed aberrator. The effect of a near field thin phase screen is to time shift the received echo at each element, while distributed aberrators result in both pulse distortions and time shifts from element to element. Most current techniques for the correction of distributed aberrators are limited to application on point targets. A new technique is proposed which uses multiple transmits from spatially shifted transmit apertures (the translating transmit aperture algorithm), in conjunction with phase conjugate filters, to correct for distributed aberrations in the presence of speckle targets. The performance of the translating transmit aperture algorithm in improving the correlation between signals received by elements of different spatial separations is measured, and factors affecting the performance of this technique are investigated in simulation and experiment.
组织中的声速不均匀性会导致超声图像的像差。这些像差可以被建模为近场薄相位屏或分布式像差器。近场薄相位屏的作用是对每个阵元接收到的回波进行时间偏移,而分布式像差器会导致脉冲失真以及阵元之间的时间偏移。目前大多数用于校正分布式像差器的技术仅限于应用于点目标。提出了一种新技术,该技术使用来自空间移位发射孔径的多次发射(平移发射孔径算法),结合相位共轭滤波器,以校正存在散斑目标时的分布式像差。测量了平移发射孔径算法在提高不同空间间距阵元接收到的信号之间相关性方面的性能,并在模拟和实验中研究了影响该技术性能的因素。