Department of Biomedical Engineering, Hefei University of Technology, Hefei 230009, China.
Department of Biomedical Engineering, Hefei University of Technology, Hefei 230009, China.
Ultrasonics. 2020 Jan;100:105978. doi: 10.1016/j.ultras.2019.105978. Epub 2019 Aug 16.
Coherent plane-wave compounding (CPWC) has the ability to generate high quality image using the backscattered signals from plane wave emitting at different steer angles. To improve the image quality of CPWC, adaptive weighting techniques have been introduced in the compounding procedure. This paper proposes subarray zeros-cross factor (SZF) for CPWC, and it is used as an adaptive weighting factor to improve image quality. The SZF is calculated based on polarity of plane-wave imaging results with adjacent steering angle to estimate the coherence of plane wave emitting events. It is effective to suppress noise and maintain background speckle pattern. Simulations and experiments were conducted to evaluate the performance of the proposed method. Results demonstrate that the SZF can achieve better performance on contrast ratio (CR) and resolution than traditional CPWC. For simulated cysts, a maximal CR improvement of 125.4% is achieved. For experimental cysts, the maximal CR improvement is 197.9%. Compared with coherence factor (CF) and generalized coherence factor (GCF), SZF can obtain improvements in contrast-to-noise ratio and speckle signal-to-noise ratio at near field and increase CR at far field. In addition, when subarray length L is in the range of [10,12], SZF can obtain satisfying comprehensive performance.
相干平面波复合(CPWC)能够利用不同偏转角发射的平面波的反向散射信号生成高质量的图像。为了提高 CPWC 的图像质量,在复合过程中引入了自适应加权技术。本文提出了 CPWC 的子阵零点交叉因子(SZF),并将其作为自适应加权因子来提高图像质量。SZF 是基于相邻偏转角的平面波成像结果的极性计算得到的,用于估计平面波发射事件的相干性。它可以有效地抑制噪声并保持背景散斑模式。通过仿真和实验对所提出的方法进行了性能评估。结果表明,与传统的 CPWC 相比,SZF 在对比度(CR)和分辨率方面具有更好的性能。对于模拟的囊肿,最大 CR 提高了 125.4%。对于实验性囊肿,最大 CR 提高了 197.9%。与相干因子(CF)和广义相干因子(GCF)相比,SZF 可以在近场提高对比度噪声比和散斑信噪比,并增加远场的 CR。此外,当子阵长度 L 在[10,12]范围内时,SZF 可以获得令人满意的综合性能。