Wojcik Janusz, Lewandowski Marcin, Żołek Norbert
Institute of Fundamental Technological Research, Polish Academy of Sciences, Pawinskiego 5B, 02-106 Warsaw, Poland.
Institute of Fundamental Technological Research, Polish Academy of Sciences, Pawinskiego 5B, 02-106 Warsaw, Poland.
Ultrasonics. 2017 Apr;76:125-135. doi: 10.1016/j.ultras.2016.12.013. Epub 2016 Dec 21.
A method of suppression of grating lobes is presented, analyzed, and verified. The method is based on creating a Virtual Receiving Subaperture (VRS) by adding virtual transducer elements not existing in the physical layout of the receiver. The VRS channels are filled with data based on signals from real channels. The analytical model of the synthetic aperture imaging system's impulse response is presented to describe the properties of the VRS. The model shows a reduction of the receiving grating lobes' amplitude (with a comparison to the main lobe's amplitude) by a magnitude equal to the number of receiving transducer elements. It is shown that effective properties of the entire system with a VRS are similar to a system with a pitch in the receiving aperture that is twice as small. The numerical calculations of the impulse response show a doubling of the signal to noise ratio, which results in a reduction of the receiving grating lobes. For experimental validation, the generalized Plane Wave Imaging with and without the VRS is compared with a basic synthetic transmit aperture (STA) imaging. The experiment confirmed that the use of a VRS allows for visualization of the objects in a medium in which they are not imaged without a VRS or are visualized with a lower contrast. The reduction of grating lobes attained using the proposed method is at the level of 15dB in the visualization of the superficial cyst.
提出、分析并验证了一种抑制光栅旁瓣的方法。该方法基于通过添加在接收器物理布局中不存在的虚拟换能器元件来创建虚拟接收子孔径(VRS)。VRS通道根据来自真实通道的信号填充数据。提出了合成孔径成像系统脉冲响应的解析模型来描述VRS的特性。该模型表明,接收光栅旁瓣的幅度(与主瓣幅度相比)降低了与接收换能器元件数量相等的量级。结果表明,具有VRS的整个系统的有效特性类似于接收孔径间距小两倍的系统。脉冲响应的数值计算表明信噪比提高了一倍,这导致接收光栅旁瓣减少。为了进行实验验证,将有无VRS的广义平面波成像与基本合成发射孔径(STA)成像进行了比较。实验证实,使用VRS可以在没有VRS时无法成像或对比度较低的介质中可视化物体。在所提出的方法中,在浅表囊肿的可视化中,光栅旁瓣的降低程度达到15dB。