The Spectrum-Beamformer for Conventional B-Mode Ultrasound Imaging System: Principle, Validation, and Robustness

IF 2.5 4区 医学 Q1 ACOUSTICS Ultrasonic Imaging Pub Date : 2022-04-02 DOI:10.1177/01617346221085184
Chen Jiang, Chengcheng Liu, Y. Zhan, Dean Ta
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引用次数: 1

Abstract

Fast and efficient imaging techniques are important for real-time ultrasound imaging. The delay and sum (DAS) beamformer is the most widely-used strategy in focused ultrasound imaging (FUI) modality. However, calculating the time delays and coherently summing the amplitude response in DAS is computationally expensive and generally require a high-performance processor to realize real-time processing. In this study, an efficient spectrum beamformer, namely full-matrix capture (FMC)-stolt, is proposed in FUI system with a linear phased array. The imaging performance of FMC-stolt was validated with the point-scatter simulation and in vitro point and cyst phantoms, and then compared with that of five beamformers, that is, Multiline acquisition (MLA), retrospective transmit beamforming (RTB) in the FUI modality, as well as DAS, Garcia’s frequency-wavenumber (f-k), Lu’s f-k in the coherent plane wave compounding imaging (CPWCI) modality, under specific conditions. We show that the imaging performance of FMC-stolt is better than MLA-DAS in non-transmit-focal regions, and comparable with RTB-DAS at all imaging depths. FMC-stolt also shows better discontinuity alleviation than MLA and RTB. In addition, FMC-stolt has similar imaging characteristics (e.g., off-axis resolution, computational cost) as the f-k beamformers. The computational complexity and actual computational time indicate that FMC-stolt is comparable to Garcia’s f-k, Lu’s f-k, and faster than RTB and CPWCI-DAS if the transmitting numbers are close for FUI and CPWCI. The study demonstrates that the proposed FMC-stolt could achieve good reconstruction speed while preserving high-quality images and thus provide a choice for software beamforming for conventional B-mode ultrasound imaging, especially for hand-held devices with limited performance processors.
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传统b型超声成像系统的频谱波束形成器:原理、验证和鲁棒性
快速、高效的成像技术是实现实时超声成像的重要手段。延迟和波束形成器是聚焦超声成像(FUI)模式中应用最广泛的策略。然而,在DAS中计算时间延迟和相干求和幅度响应的计算成本很高,通常需要高性能处理器来实现实时处理。本研究提出了一种有效的频谱波束形成器,即全矩阵捕获(FMC)-stolt,用于具有线性相控阵的FUI系统。通过点散射仿真和体外点、囊肿模型验证了FMC-stolt的成像性能,并在特定条件下与FUI模式下的多线采集(MLA)、回溯发射波束形成(RTB)以及相干平面波复合成像(CPWCI)模式下的DAS、Garcia频波数(f-k)、Lu f-k等五种波束形成器进行了比较。研究表明,FMC-stolt在非透射焦区域的成像性能优于MLA-DAS,在所有成像深度与RTB-DAS相当。FMC-stolt也比MLA和RTB表现出更好的不连续缓解。此外,FMC-stolt具有与f-k波束形成器相似的成像特性(例如,离轴分辨率,计算成本)。计算复杂度和实际计算时间表明,FMC-stolt与Garcia的f-k、Lu的f-k相当,如果FUI和CPWCI的发送数相近,则比RTB和CPWCI- das快。研究表明,所提出的FMC-stolt可以在保持高质量图像的同时获得良好的重建速度,从而为传统b模超声成像提供了一种软件波束形成的选择,特别是对于处理器性能有限的手持设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ultrasonic Imaging
Ultrasonic Imaging 医学-工程:生物医学
CiteScore
5.10
自引率
8.70%
发文量
15
审稿时长
>12 weeks
期刊介绍: Ultrasonic Imaging provides rapid publication for original and exceptional papers concerned with the development and application of ultrasonic-imaging technology. Ultrasonic Imaging publishes articles in the following areas: theoretical and experimental aspects of advanced methods and instrumentation for imaging
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