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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Region-of-Interest-Based Closed-Loop Beamforming for Spinal Ultrasound Imaging
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Region-of-Interest-Based Closed-Loop Beamforming for Spinal Ultrasound Imaging

机译:基于兴趣区域的闭环波束成形技术,用于脊柱超声成像

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摘要

Clear visualization of spine structures in ultrasound imaging is difficult due to factors such as specular reflection, off-axis energy, and reverberation artifacts. The received channel data from the spine are often tilted even after delay correction, resulting in signal cancellation during the beamforming process. Conventional beamformers are not designed to tackle this issue. This paper proposes a closed-loop beamforming method which feeds back the location of the spine to the beamforming process so that backscattered bone signals can be aligned prior to the beamforming. To suppress the weak soft tissue and reverberation artifacts and increase the contrast of bones, a tensor-based filtering is employed prior to the cross-correlation-based alignment. Directional filtering is also employed to improve the bone surface detection. Phantom studies show improvement on the sharpness of the spine without shape distortion. In vivo results confirm significant contrast improvement of spinal structures. Compared with the conventional delay-and-sum beamforming, the proposed method improves the contrast ratio (CR) of the spine from 0.56 to 0.96. The 6-dB width of bone surfaces is also reduced by 51%.
机译:由于诸如镜面反射,离轴能量和混响伪影等因素,在超声成像中很难清晰显示脊柱结构。即使在延迟校正之后,从脊椎接收到的信道数据也经常会倾斜,从而导致在波束成形过程中出现信号抵消。常规的波束形成器并非旨在解决此问题。本文提出了一种闭环波束成形方法,该方法将脊柱的位置反馈到波束成形过程中,以便可以在波束成形之前对齐反向散射的骨骼信号。为了抑制弱的软组织和混响伪影并增加骨骼的对比度,在基于互相关的对齐之前使用基于张量的滤波。定向过滤还用于改善骨表面检测。幻影研究表明,脊椎的清晰度得到了改善,而没有变形。体内结果证实脊柱结构的对比度明显改善。与传统的延迟和求和波束形成相比,该方法将脊柱的对比度(CR)从0.56提高到0.96。骨表面的6 dB宽度也减少了51%。

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