零差成像与改进延迟乘和波束形成相结合的相干平面波合成。

IF 2.6 4区 医学 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Yijun Xu, Yaoting Yue, Hao Wang, Wenting Gu, Boyi Li, Yaqing Chen, Xin Liu
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引用次数: 0

摘要

相干平面波复合,虽然有效的超快速超声成像,产生较低的图像质量,由于非聚焦波。延迟乘和(DMAS)波束形成是一种具有代表性的基于相干的方法,它可以提高图像质量,但存在过抑制带来的散斑质量差的问题。当前基于dmas的方法涉及对比度、分辨率和斑点保存之间的权衡。为了克服这一限制,研究了一种将零相减成像(NSI)和DMAS相结合的波束形成方法。该方法探索了不同波束形成器上的DMAS,在接收处采用NSI和延迟求和(DAS),在不同波束形成器上跨发射维进行乘和,从而同时具有DAS的散斑质量和NSI的高分辨率。通过模拟、模拟和体内数据集评估了所提出方法的有效性。实验研究表明,与NSI相比,该方法的对比度提高了10.02%,散斑信噪比提高了45.19%,广义噪比提高了12.37%。该方法还将半最大值的全宽度提高了0.24 mm。结果表明,该方法在解决图像过度压缩问题的同时,获得了较好的分辨率和对比度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Null subtraction imaging combined with modified delay multiply-and-sum beamforming for coherent plane-wave compounding.

Coherent plane-wave compounding, while efficient for ultrafast ultrasound imaging, yields lower image quality due to unfocused waves. Delay multiply-and-sum (DMAS) beamformer is one of the representative coherence-based methods which can improve images quality, but suffers from poor speckle quality brought by oversuppression. Current DMAS-based methods involve trade-offs between contrast, resolution, and speckle preservation. To overcome this limitation, a new beamformer method combining the null subtraction imaging (NSI) and DMAS is investigated. The proposed method explores the DMAS on different beamformers which employs NSI and delay and sum (DAS) at receive and do multiply-and-sum on different beamformers across transmitting dimension, thereby simultaneously possessing the speckle quality of DAS and the high resolution of NSI. The effectiveness of the proposed method is evaluated through simulation, phantom, and in vivo datasets. From the experimental study, in comparison with NSI, the proposed method has improved contrast ratio by 10.02%, speckle signal-to-noise ratio by 45.19%, and generalized contrast-to-noise ratio by 12.37%. The method has also improved the full width at half maximum by up to 0.24 mm. The results indicate that the proposed method achieves better resolution and contrast, while also alleviating the issue of excessive compression.

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来源期刊
Medical & Biological Engineering & Computing
Medical & Biological Engineering & Computing 医学-工程:生物医学
CiteScore
6.00
自引率
3.10%
发文量
249
审稿时长
3.5 months
期刊介绍: Founded in 1963, Medical & Biological Engineering & Computing (MBEC) continues to serve the biomedical engineering community, covering the entire spectrum of biomedical and clinical engineering. The journal presents exciting and vital experimental and theoretical developments in biomedical science and technology, and reports on advances in computer-based methodologies in these multidisciplinary subjects. The journal also incorporates new and evolving technologies including cellular engineering and molecular imaging. MBEC publishes original research articles as well as reviews and technical notes. Its Rapid Communications category focuses on material of immediate value to the readership, while the Controversies section provides a forum to exchange views on selected issues, stimulating a vigorous and informed debate in this exciting and high profile field. MBEC is an official journal of the International Federation of Medical and Biological Engineering (IFMBE).
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