论文标题

所以你认为你可以吗?关于延迟和光束形成的观点

So you think you can DAS? A viewpoint on delay-and-sum beamforming

论文作者

Perrot, Vincent, Polichetti, Maxime, Varray, François, Garcia, Damien

论文摘要

在高框架超声成像中,延迟和延迟(DAS)是最广泛的数字波束形式。它的实现非常简单,并且与实时应用程序兼容。在这一观点文章中,我们描述了DAS波束形成的基本原理。详细介绍了基本理论和数值方法,以便用户可以意识到其功能和局限性。特别是,我们讨论了f数字和声音速度对图像质量的重要性,并提出一种解决方案来从物理观点设置其值。我们建议从换能器元件的方向性以及延迟信号的相分散体中确定f数字。为了清晰和开放,提供了简化的MATLAB代码。在体外和体内研究了F数字和声音速度对横向分辨率和对比度比率的影响。如果无法正确预设,这两个因素会对图像质量的标准指标(即CNR和FWHM)产生重大负面影响。在体外或体内与DAS进行光束时,建议优化这些参数以明智地使用并防止图像降解。

Delay-and-sum (DAS) is the most widespread digital beamformer in high-frame-rate ultrasound imaging. Its implementation is simple and compatible with real-time applications. In this viewpoint article, we describe the fundamentals of DAS beamforming. The underlying theory and numerical approach are detailed so that users can be aware of its functioning and limitations. In particular, we discuss the importance of the f-number and speed of sound on image quality, and propose one solution to set their values from a physical viewpoint. We suggest determining the f-number from the directivity of the transducer elements and the speed of sound from the phase dispersion of the delayed signals. Simplified Matlab codes are provided for the sake of clarity and openness. The effect of the f-number and speed of sound on the lateral resolution and contrast-to-noise ratio was investigated in vitro and in vivo. If not properly preset, these two factors had a substantial negative impact on standard metrics of image quality (namely CNR and FWHM). When beamforming with DAS in vitro or in vivo, it is recommended to optimize these parameters in order to use it wisely and prevent image degradation.

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