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High frame rate synthetic aperture vector flow imaging for transthoracic echocardiography.

机译:用于经胸超声心动图的高帧率合成孔径矢量流成像。

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摘要

This work presents the first in vivo results of 2-D high frame rate vector velocity imaging for transthoracic cardiac imaging. Measurements are made on a healthy volunteer using the SARUS experimental ultrasound scanner connected to an intercostal phased-array probe. Two parasternal long-axis view (PLAX) are obtained, one centred at the aortic valve and another centred at the left ventricle. The acquisition sequence was composed of 3 diverging waves for high frame rate synthetic aperture flow imaging. For verification a phantom measurement is performed on a transverse straight 5 mm diameter vessel at a depth of 100 mm in a tissue-mimicking phantom. A flow pump produced a 2 ml/s constant flow with a peak velocity of 0.2 m/s. The average estimated flow anglein the ROI was 86.22◦ ± 6.66◦ with a true flow angle of 90◦. A relative velocity bias of −39% with a standard deviation of 13% was found. In-vivo acquisitions show complex flow patterns in the heart. In the aortic valve view, blood is seen exiting the left ventricle cavity through the aortic valve into the aorta during the systolic phase of the cardiac cycle. In the left ventricle view, blood flow is seen entering the left ventricle cavity through the mitral valve and splitting in two ways when approximating the left ventricle wall. The work presents 2-D velocity estimates on the heart from a non-invasive transthoracic scan. The ability of the method detecting flow regardless of the beam angle could potentially reveal a more complete view of the flow patterns presented on the heart.
机译:这项工作提出了用于经胸心脏成像的二维高帧速矢量速度成像的第一个体内结果。使用连接至肋间相控阵探头的SARUS实验超声扫描仪,对健康的志愿者进行测量。获得两个胸骨旁长轴视图(PLAX),一个以主动脉瓣为中心,另一个以左心室为中心。采集序列由3个发散波组成,用于高帧速合成孔径流成像。为了验证,在模仿组织的模型中在直径为5 mm的横向笔直的5毫米深度的容器上进行模型测量,深度为100 mm。流量泵产生2 ml / s的恒定流量,峰值速度为0.2 m / s。在ROI中的平均估计流动角为86.22°±6.66°,真实流动角为90°。发现相对速度偏差为-39%,标准偏差为13%。体内采集显示心脏中复杂的血流模式。在主动脉瓣视图中,可以看到在心动周期的收缩期期间,血液通过主动脉瓣从左心室腔流出进入主动脉。在左心室视图中,可以看到血流通过二尖瓣进入左心室腔,并在接近左心室壁时以两种方式分裂。这项工作提出了无创经胸扫描对心脏的二维速度估计。不管束角如何,该方法检测流量的能力都可能揭示出心脏上呈现的流量模式的更完整视图。

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