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Motion Artifacts and Correction in Multipulse High-Frame Rate Contrast-Enhanced Ultrasound

机译:多脉冲高帧频对比度增强超声中的运动伪像和校正

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摘要

High-frame-rate (HFR) ultrasound (US) imaging and contrast-enhanced US (CEUS) are often implemented using multipulse transmissions, to enhance image quality. Multipulse approaches, however, suffer from degradation in the presence of motion, especially when coherent compounding and CEUS are combined. In this paper, we investigate this effect on the intensity of HFR CEUS in deep tissue imaging using simulations and in vivo contrast echocardiography (CE). The simulation results show that the motion artifact is much higher when the flow is in an axial direction than a lateral direction. Using a pulse repetition frequency suitable for cardiac imaging, a motion of 35 cm/s can cause as much as 28.5 dB decrease in image intensity, where compounding can contribute up to 18.7 dB of intensity decrease (11 angles). These motion effects are also demonstrated for in vivo cardiac HFR CE, where the large velocities of both the myocardium and the blood are present. Intensity reductions of 10.4 dB are readily visible in the chamber. Finally, we demonstrate how performing motion-correction before pulse inversion compounding greatly reduces such motion artifact and improve image signal-to-noise ratio and contrast.
机译:通常使用多脉冲传输来实现高帧率(HFR)超声(US)成像和对比度增强的US(CEUS),以提高图像质量。然而,多脉冲方法在运动的情况下会退化,尤其是当相干复合和CEUS结合使用时。在本文中,我们使用模拟和体内对比超声心动图(CE)研究这种对深层组织成像中HFR CEUS强度的影响。仿真结果表明,当流动在轴向方向上比横向方向上时,运动伪影要高得多。使用适合心脏成像的脉冲重复频率,35 cm / s的运动可能会导致图像强度下降多达28.5 dB,其中复合可导致强度下降(11个角度)高达18.7 dB。这些运动效应还针对体内心脏HFR CE进行了证实,其中存在心肌和血液的大速度。在腔室内很容易看到强度降低了10.4 dB。最后,我们演示了如何在脉冲反转复合之前执行运动校正,从而大大减少此类运动伪像并提高图像信噪比和对比度。

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