摘要
血流速度剖面用于计算壁面剪切率等血流动力学指标,与动脉粥样硬化病程发展密切相关。超快超声散斑跟踪广泛用于血流速度剖面估计,然而多角度平面波复合成像存在血流散射体的运动伪影,不利于流速估计。提出了一种多角度平面波复合成像的局部运动补偿法,对射频信号时间序列的相邻帧进行局部运动补偿来消除不同径向位置的运动伪影,从而提高流速测量准确性。相比直接相干复合,B-MoCo法将仿真、仿体实验中流速测量结果的归一化均方根误差平均减小了10.37%、37.82%,说明了B-MoCo法的有效性。基于兔骼动脉的实测实验进一步证明了B-MoCo法的临床可行性。综上,B-MoCo法能够有效提高血流速度剖面的测量精度,有助于相关心血管疾病的早期诊断与病程监测。
Blood flow velocity profile is utilized to calculate hemodynamic indicators such as wall shear rate,etc.,which are closely related to the progression of atherosclerosis.Ultrafast ultrasound speckle tracking is widely employed for the blood flow velocity profile estimation.However,motion artifacts from blood flow scatterers in multi-angle plane wave compound imaging have an adverse impact on the flow velocity estimation.In this paper,A block-to-block motion compensation method for the multi-angle plane wave compound imaging is proposed to improve the accuracy of the flow velocity measurements by eliminating motion artifacts at different radial positions by performing B-MoCo for every two neighboring frames in the time series of radio frequency signals.Compared with the direct coherent compound,the B-MoCo method reduces the normalized root mean square errors of the flow velocity estimation in the simulation and in-vitro experiments by an average of 10.37%and 37.82%,which has demonstrated the effectiveness of the B-MoCo method.The in-vivo experiments based on rabbit skeletal arteries have further demonstrated the clinical feasibility of the proposed method.In summary,the B-MoCo method can effectively improve the measurement accuracy of blood flow velocity profile,which is beneficial for the early diagnosis of related cardiovascular diseases.
作者
杜吉媛
何冰冰
郎恂
吕闻冰
张榆锋
Du Jiyuan;He Bingbing;Lang Xun;Lyu Wenbing;Zhang Yufeng(School of Information Science and Engineering,Yunnan University,Kunming 650504,China)
出处
《仪器仪表学报》
EI
CAS
CSCD
北大核心
2024年第4期155-164,共10页
Chinese Journal of Scientific Instrument
基金
国家自然科学基金(62201495,62261057)
云南省智能系统与计算重点实验室(202205AG070003)资助。
关键词
超声多角度平面波复合
局部运动补偿
血流速度剖面
散斑跟踪
ultrasonic multi-angle plane wave compounding
block-to-block motion compensation
blood flow velocity profile
speckle tracking
作者简介
杜吉媛,2022年于东华理工大学机械与电子信息工程学院获得学士学位,现为云南大学硕士研究生,主要研究方向为超声信号处理。E-mail:1011600502@qq.com;通信作者:何冰冰,2015年于云南大学获得学士学位,2021年于云南大学获得博士学位,现为云南大学信息学院电子工程系讲师,研究方向为医学超声工程、光电医疗美容。E-mail:hebingbing@ynu.edu.cn。