IEEE Trans Ultrason Ferroelectr Freq Control. 2018 Mar;65(3):356-365. doi: 10.1109/TUFFC.2017.2757880. Epub 2017 Sep 28.
Ultrasound (US) beamforming is the process of reconstructing an image from acquired echo traces on several transducer elements. Typical beamforming approaches, such as delay-and-sum, perform simple projection operations, while techniques using statistical information also exist, e.g., adaptive, phase coherence, delay-multiply-and-sum, and sparse coding approaches. Inspired by the feasibility and success of inverse problem (IP) formulations in several image reconstruction problems, such as computed tomography, we herein devise an IP approach for US beamforming. We define a linear forward model for the synthesis of the beamformed image, and solve its IP thanks to several intuitive and physics-based constraints and regularization terms proposed. These reflect the prior knowledge about the spectra of carrier signal and spatial coherence of modulated signal. These constraints admit effective formulation through sparse representations. Our proposed method was evaluated for plane-wave imaging (PWI) that transmits unfocused waves, enabling high frame rates with large field of view at the expense of much lower image quality with conventional beamforming techniques. Results are evaluated in numerical simulations, as well as tissue-mimicking phantoms and in vivo data provided by PWI challenge in medical US. The best results achieved by our proposed techniques are 0.39-mm full-width at half-maximum for spatial resolution and 16.3-dB contrast-to-noise ratio, using a single plane-wave transmit.
超声(US)波束形成是从几个换能器元件上获取的回波轨迹重建图像的过程。典型的波束形成方法,如延迟和求和,执行简单的投影操作,而使用统计信息的技术也存在,例如自适应、相位相干、延迟乘法和求和、稀疏编码方法。受逆问题 (IP) 公式在几种图像重建问题中的可行性和成功的启发,例如计算机断层扫描,我们在此为 US 波束形成设计了一种 IP 方法。我们定义了一个用于波束形成图像合成的线性正向模型,并通过提出的几个直观和基于物理的约束和正则化项来解决其 IP。这些反映了关于载波信号频谱和调制信号空间相干性的先验知识。这些约束可以通过稀疏表示来有效表达。我们提出的方法用于平面波成像 (PWI) 的评估,该方法发射非聚焦波,以牺牲常规波束形成技术的图像质量为代价,实现高帧率和大视场。结果在数值模拟、组织模拟体模以及由医学 US PWI 挑战提供的体内数据中进行了评估。使用单个平面波发射,我们提出的技术可实现 0.39 毫米的全宽半最大值空间分辨率和 16.3dB 的对比度噪声比。