超声造影剂微泡重建的联合增强平均-标准偏差因子和最小方差波束形成器

Yadan Wang, Yuanguo Wang, Chichao Zheng, Hu Peng, Chaoxue Zhang
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引用次数: 1

摘要

超分辨率超声成像(SRUI)是基于对注入造影剂微泡(mb)的定位并跟踪其位移,达到超过声衍射极限的空间分辨率,是诊断微血管相关疾病的一种很有前景的方法。自适应波束形成方法已被证明可以有效地增加检测到的mb数,提高定位精度。在这项研究中,我们提出了一种联合增强平均-标准偏差因子和最小方差(EMSF-MV)波束形成器,以提高mb的分辨率,并抑制回波中的噪声和杂波。仿真和实验结果表明,与MV相比,EMSF-MV可使半最大值时的横向全宽提高40%以上,抑制峰值旁瓣电平70%以上。该方法有可能增加孤立MB散射体的数量,提高SRUI的定位精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrasound Contrast Microbubbles Reconstruction Using a Joint Enhanced Mean-to-Standard-Deviation Factor and Minimum Variance Beamformer
Super-resolution ultrasound imaging (SRUI) is based on localizing the injected contrast microbubbles (MBs) and tracking of their displacement to achieve spatial resolution beyond the acoustic diffraction limit, thus being a promising approach for diagnosing microvascular-related diseases. Adaptive beamforming methods have been proven to effectively increase the number of detected MBs and improve the localization accuracy. In this study, we propose a joint enhanced mean-to-standard-deviation factor and minimum variance (EMSF-MV) beamformer to improve the resolution of MBs and suppress noise and clutter in echoes. Simulation and experimental results show that EMSF-MV improves the lateral full-width at half-maximum by more than 40% and suppresses the peak sidelobe level by more than 70%, compared with MV. The proposed method has the potential to increase the number of isolated MB scatterers and improve the localization accuracy for SRUI.
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