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首页> 外文期刊>IEEE Transactions on Medical Imaging >Improved Shear Wave Motion Detection Using Pulse-Inversion Harmonic Imaging With a Phased Array Transducer
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Improved Shear Wave Motion Detection Using Pulse-Inversion Harmonic Imaging With a Phased Array Transducer

机译:使用相控阵换能器的脉冲反转谐波成像改进的剪切波运动检测

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摘要

Ultrasound tissue harmonic imaging is widely used to improve ultrasound B-mode imaging quality thanks to its effectiveness in suppressing imaging artifacts associated with ultrasound reverberation, phase aberration, and clutter noise. In ultrasound shear wave elastography (SWE), because the shear wave motion signal is extracted from the ultrasound signal, these noise sources can significantly deteriorate the shear wave motion tracking process and consequently result in noisy and biased shear wave motion detection. This situation is exacerbated in in vivo SWE applications such as heart, liver, and kidney. This paper, therefore, investigated the possibility of implementing harmonic imaging, specifically pulse-inversion harmonic imaging, in shear wave tracking, with the hypothesis that harmonic imaging can improve shear wave motion detection based on the same principles that apply to general harmonic B-mode imaging. We first designed an experiment with a gelatin phantom covered by an excised piece of pork belly and show that harmonic imaging can significantly improve shear wave motion detection by producing less underestimated shear wave motion and more consistent shear wave speed measurements than fundamental imaging. Then, a transthoracic heart experiment on a freshly sacrificed pig showed that harmonic imaging could robustly track the shear wave motion and give consistent shear wave speed measurements of the left ventricular myocardium while fundamental imaging could not. Finally, an in vivo transthoracic study of seven healthy volunteers showed that the proposed harmonic imaging tracking sequence could provide consistent estimates of the left ventricular myocardium stiffness in end-diastole with a general success rate of 80% and a success rate of 93.3% when excluding the subject with Body Mass Index higher than 25. These promising results indicate that pulse-inversion harmonic imaging can significantly improve shear wave motion tracking and thus potentially facili- ate more robust assessment of tissue elasticity by SWE.
机译:超声组织谐波成像由于能有效抑制与超声混响,相位像差和杂波噪声相关的成像伪影,因此被广泛用于提高超声B型成像质量。在超声剪切波弹性成像(SWE)中,由于从超声信号中提取了剪切波运动信号,因此这些噪声源会显着降低剪切波运动的跟踪过程,从而导致噪声和偏向剪切波运动检测。在体内SWE应用(例如心脏,肝脏和肾脏)中,这种情况更加恶化。因此,本文研究了在剪切波跟踪中实现谐波成像(特别是脉冲反转谐波成像)的可能性,并提出了以下假设:谐波成像可以基于与一般谐波B模式相同的原理来改善剪切波运动检测。成像。我们首先设计了一个实验模型,将明胶幻像覆盖在一块被切去的猪肚上,结果表明,与基本成像相比,谐波成像可以产生更少的被低估的剪切波运动和更一致的剪切波速度测量结果,从而显着改善剪切波运动检测。然后,对刚牺牲的猪进行的胸腔心脏实验表明,谐波成像可以稳健地跟踪切变波的运动,并且可以对左心室心肌进行一致的切变波速度测量,而基本成像则不能。最后,对七名健康志愿者进行的经胸腔体内研究表明,所提出的谐波成像跟踪序列可以一致地估计舒张末期左心室心肌的僵硬度,排除后的总体成功率为80%,成功率为93.3%体重指数高于25的受试者。这些令人鼓舞的结果表明,脉冲反转谐波成像可以显着改善剪切波运动跟踪,从而有可能通过SWE促进对组织弹性的更可靠评估。

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