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Fresnel-based beamforming for low-cost portable ultrasound

机译:基于菲涅耳的波束成形技术,用于低成本便携式超声

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摘要

In this paper, we propose a modified electronic Fresnel-based beamforming method for low-cost portable ultrasound systems. This method uses a unique combination of analog and digital beamforming methods. Two versions of Fresnel beamforming are presented in this paper: 4-phase (4 different time delays or phase shifts) and 8-phase (8 different time delays or phase shifts). The advantage of this method is that a system with 4 to 8 transmit channels and 2 receive channels with a network of switches can be used to focus an array with 64 to 128 elements. The simulation and experimental results show that Fresnel beamforming image quality is comparable to traditional delay-and-sum (DAS) beamforming in terms of spatial resolution and contrast-to-noise ratio (CNR) under certain system parameters. With an f-number of 2 and 50% signal bandwidth, the experimental lateral beamwidths are 0.54, 0.67, and 0.66 mm and the axial pulse lengths are 0.50, 0.51, and 0.50 mm for DAS, 8-phase, and 4-phase Fresnel beamforming, respectively. The experimental CNRs are 4.66, 4.42, and 3.98, respectively. These experimental results are in good agreement with simulation results.
机译:在本文中,我们提出了一种用于低成本便携式超声系统的基于电子菲涅耳的改进波束形成方法。该方法使用了模拟和数字波束形成方法的独特组合。本文介绍了两种形式的菲涅耳波束成形:4相(4个不同的时间延迟或相移)和8相(8个不同的时间延迟或相移)。此方法的优点是,具有4至8个发送通道和2个接收通道以及开关网络的系统可用于聚焦具有64至128个元素的阵列。仿真和实验结果表明,在某些系统参数下,菲涅耳波束形成的图像质量在空间分辨率和对比度噪声比(CNR)方面可与传统的延迟总和(DAS)波束形成相比。在f值为2和50%的信号带宽的情况下,对于DAS,8相和4相菲涅耳,实验侧向束宽分别为0.54、0.67和0.66 mm,轴向脉冲长度为0.50、0.51和0.50 mm分别进行波束成形。实验的CNR分别为4.66、4.42和3.98。这些实验结果与仿真结果非常吻合。

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