IEEE Trans Med Imaging. 2018 Feb;37(2):337-348. doi: 10.1109/TMI.2017.2736423. Epub 2017 Aug 4.
Plane-wave-based ultrafast imaging has become the prevalent technique for non-conventional ultrasound imaging. The image quality, especially in terms of the suppression of artifacts, is generally compromised by reducing the number of transmissions for a higher frame rate. We hereby propose a new ultrafast imaging framework that reduces not only the side lobe artifacts but also the axial lobe artifacts using combined transmissions with a new coherence-based factor. The results from simulations, in vitro wire phantoms, the ex vivo porcine artery, and the in vivo porcine heart show that our proposed methodology greatly reduced the axial lobe artifact by 25±5 dB compared with coherent plane-wave compounding (CPWC), which was considered as the ultrafast imaging standard, and suppressed side lobe artifacts by 15 ± 5 dB compared with CPWC and coherent spherical-wave compounding. The reduction of artifacts in our proposed ultrafast imaging framework led to a better boundary delineation of soft tissues than CPWC.
基于平面波的超快成像是一种新兴的非传统超声成像技术。为了提高帧率,减少发射次数会降低图像质量,尤其是在抑制伪像方面。为此,我们提出了一种新的超快成像框架,该框架不仅可以通过新的基于相干性的因子的联合发射来减少旁瓣伪像,还可以减少轴向伪像。仿真、离体金属丝 phantom、离体猪动脉和活体猪心脏的实验结果表明,与被认为是超快成像标准的相干平面波复合(CPWC)相比,我们提出的方法将轴向伪像降低了 25±5dB,与 CPWC 和相干球面波复合相比,旁瓣伪像降低了 15±5dB。与 CPWC 相比,我们提出的超快成像框架中的伪像减少,使得软组织的边界描绘更加清晰。