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首页> 外文期刊>Medical Imaging, IEEE Transactions on >Visualizing the Tumor Microvasculature With a Nonlinear Plane-Wave Doppler Imaging Scheme Based on Amplitude Modulation
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Visualizing the Tumor Microvasculature With a Nonlinear Plane-Wave Doppler Imaging Scheme Based on Amplitude Modulation

机译:使用基于振幅调制的非线性平面波多普勒成像方案可视化肿瘤微脉管系统

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摘要

Imaging with ultrasonic plane waves enables the combination of Doppler and microbubble contrast-enhanced imaging without compromising the Doppler ensemble length, as is the case for conventional line-by-line imaging, thus maintaining flow sensitivity. This permits the separation of conduit flow in large vessels from the perfusion background and the presentation of velocity estimates in real-time. However, the ability to differentiate perfusion from the tissue signal is limited by the contrast-to-tissue (CTR) ratio achieved with the contrast-enhanced pulsing sequence, independently of the acquisition length. One way to improve the CTR is to use a Doppler sequence based on amplitude modulation instead of one based on pulse inversion. In this work, we discuss how amplitude modulation can be adapted to Doppler processing. We show that amplitude modulation Doppler, like pulse inversion Doppler, can separate the signal of moving tissue from that of moving microbubbles, while achieving a better contrast-to-tissue ratio than pulse inversion Doppler, both in vitro and in vivo. Both amplitude modulation Doppler and pulse inversion Doppler yield similar velocity estimates when the bandwidth of the RF echo is properly compensated. Finally, we demonstrate how amplitude modulation Doppler can be used to reveal both the conduit flow and the capillary perfusion at high frame rates in an in vivo tumor.
机译:超声平面波成像可实现多普勒成像和微泡对比度增强成像的组合,而不会像传统逐行成像那样影响多普勒合奏长度,从而保持流量敏感性。这样可以将大血管中的导管流与灌注背景分开,并实时显示速度估计值。但是,区分灌注与组织信号的能力受限于使用对比增强脉冲序列获得的对比组织(CTR)比,而与采集长度无关。一种提高CTR的方法是使用基于幅度调制的多普勒序列,而不是基于脉冲反转的多普勒序列。在这项工作中,我们讨论了幅度调制如何适应多普勒处理。我们表明,调幅多普勒像脉冲倒置多普勒一样,可以将运动组织的信号与移动微泡的信号分开,同时在体外和体内均比脉冲倒置多普勒获得更好的对比度/组织比。当适当地补偿RF回波的带宽时,幅度调制多普勒和脉冲反转多普勒都产生相似的速度估计。最后,我们展示了如何在体内肿瘤中以高帧频使用调幅多普勒显示导管流量和毛细血管灌注。

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