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Ultrafast imaging of the heart using circular wave synthetic imaging with phased arrays

机译:使用相控阵圆波合成成像对心脏进行超快成像

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The concept of synthetic imaging using circular wave is proposed to image with a very large field of view and at a very high frame rate (>1000 images/sec) heart motions with a conventional cardiac phased array probe. The goal of this study is to demonstrate in vivo the feasibility of this technique. Experiments are first performed in-vitro on ultrasound phantoms to optimize the trade-off between image quality and frame rate. An in vivo study is then performed on 10 sheep with a conventional phased array probe placed directly on the epicardium at different locations to obtain cine-loop of a complete heart cycle in the conventional imaging planes (long and short axis). After classical post processing of acquired cine-loop (wall tracking and tissue Doppler velocity estimation), the propagation of mechanical waves induced naturally during the heart cycle such as aortic and mitral valves closure can be observed.
机译:提出了使用圆波的合成成像的概念,以利用常规的心脏相控阵探头以非常大的视野和非常高的帧频(> 1000图像/秒)对心脏运动进行成像。这项研究的目的是在体内证明该技术的可行性。首先在体外对超声体模进行实验,以优化图像质量和帧频之间的权衡。然后在10只绵羊身上进行体内研究,将传统的相控阵探针直接放置在心外膜的不同位置,以在常规成像平面(长轴和短轴)上获得完整心动周期的电影环。在对获得的电影环路进行经典的后处理(壁跟踪和组织多普勒速度估计)之后,可以观察到在心脏周期中自然诱发的机械波的传播,例如主动脉和二尖瓣关闭。

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