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A modified sidelobe blanking beamforming method for ultrasound plane wave imaging

波束赋形 减法 杂乱 点目标 连贯性(哲学赌博策略) 点(几何) 计算机科学 图像质量 自适应波束形成器 平面(几何) 平面波 消隐 信噪比(成像) 声学 数学 雷达 算法 光学 物理 人工智能 图像(数学) 计算机视觉 合成孔径雷达 电信 几何学 统计 算术
作者
Lin Tong,Ping Wang,Yue Shen,Xinwang Shi,C. H. Cheng,Fenglong Zhao,Xiaowei Zhou
出处
期刊:Journal of the Acoustical Society of America [Acoustical Society of America]
卷期号:156 (2): 1058-1069 被引量:4
标识
DOI:10.1121/10.0028200
摘要

In this paper, an ultrasound beamforming method for plane wave (PW) imaging based on modified sidelobe blanking (MSLB) is proposed to improve image resolution and contrast ratio (CR). In this framework, PWs from various angles were designed to create main and auxiliary beamformer signals. Specifically, the PW signals from all angles were first coherently combined to serve as the main beamformer output signals. To prevent excessive clutter and noise, output signals in the main beamformer were weighted by the generalized coherence factor. Subsequently, the PW signals were split into positive and negative angles to perform a subtraction, creating the auxiliary beamformer. Finally, signals in the main beamformer were compared with the signals in the auxiliary beamformer point by point to further eliminate the noises and clutters. Compared with the delay and sum, full width at half maximum of the MSLB for point targets was reduced by an average of 54.17% and 51.65% in simulations and experiments, respectively; and the corresponding CR was improved by 55.38% and 18.40% on average. The MSLB method provided better imaging quality in human carotid arteries. In conclusion, the proposed method can effectively improve image resolution and CR with low computational complexity.
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