Wennerström Erik, Stepinski Tadeusz
Uppsala University, Signals and Systems Group, Uppsala, Sweden.
IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Aug;54(8):1614-22.
A method for ultrasonic synthetic aperture imaging using finite-sized transducers is introduced that is based on a virtual source (VS) concept. In this setup, a focused transducer creates a VS element at its focal point that facilitates the use of synthetic aperture focusing technique (SAFT). It is shown that the performance of the VS method may be unsatisfactory due to the distortion introduced by the diffraction effects of the aperture used for creating the VS element. A solution to this problem is proposed that consists of replacing the classical SAFT by the extended synthetic aperature focusing technique (ESAFT) algorithm presented in our earlier works. In ESAFT, the full geometry of the VS is modeled, instead of applying the simplified point source approximation used when VS is combined with classical SAFT. The proposed method yields a substantial improvement in spatial resolution compared to that obtained using SAFT. Performance of the proposed algorithm is first demonstrated on simulated data, then verified on real data acquired with an array system.
介绍了一种基于虚拟源(VS)概念的使用有限尺寸换能器的超声合成孔径成像方法。在这种设置中,一个聚焦换能器在其焦点处创建一个VS元件,这便于使用合成孔径聚焦技术(SAFT)。结果表明,由于用于创建VS元件的孔径的衍射效应所引入的失真,VS方法的性能可能不尽人意。针对此问题提出了一种解决方案,即由我们早期工作中提出的扩展合成孔径聚焦技术(ESAFT)算法取代经典SAFT。在ESAFT中,对VS的完整几何形状进行建模,而不是应用将VS与经典SAFT结合使用时所采用的简化点源近似。与使用SAFT获得的结果相比,所提出的方法在空间分辨率方面有显著提高。所提出算法的性能首先在模拟数据上得到验证,然后在使用阵列系统采集的真实数据上得到验证。