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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Leveraging the Imaging Transmit Pulse to Manipulate Phase-Change Nanodroplets for Contrast-Enhanced Ultrasound
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Leveraging the Imaging Transmit Pulse to Manipulate Phase-Change Nanodroplets for Contrast-Enhanced Ultrasound

机译:利用成像发射脉冲来操纵相变纳米液滴,以增强超声

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Phase-change perfluorohexane nanodroplets (PFHnDs) are a new class of recondensahle submicrometer-sized contrast agents that have potential for contrast-enhanced and super-resolution ultrasound imaging with an ability to reach extravascular targets. The PFHnDs can be optically triggered to undergo vaporization, resulting in spatially stationary, temporally transient microbubbles. The vaporized PFHnDs are hyperechoic in ultrasound imaging for several to hundreds of milliseconds before recondensing to their native, hypoechoic, liquid nanodroplet state. The decay of echogenicity, i.e., the dynamic behavior of the ultrasound signal from optically triggered PFHnDs in ultrasound imaging, can be captured using high-frame-rate ultrasound imaging. We explore the possibility to manipulate the echogenicity dynamics of optically triggered PFHnDs in ultrasound imaging by changing the phase of the ultrasound imaging pulse. Specifically, the ultrasound imaging system was programmed to transmit two imaging pulses with inverse polarities. We show that the imaging pulse phase can affect the amplitude and the temporal behavior of PFHnD echogenicity in ultrasound imaging. The results of this study demonstrate that the ultrasound echogenicity is significantly increased (about 78% improvement) and the hyperechoic timespan of optically triggered PFHnDs is significantly longer (about four times) if the nanodroplets are imaged by an ultrasound pulse starting with rarefactional pressure versus a pulse starting with compressional pressure. Our finding has direct and significant implications for contrast-enhanced ultrasound imaging of droplets in applications such as super-resolution imaging and molecular imaging where detection of individual or low-concentration PFHnDs is required.
机译:相变全氟己烷纳米液滴(PFHnDs)是一类新的再浓缩亚微米级造影剂,具有进行造影剂增强和超分辨率超声成像的潜力,并能够达到血管外靶标。 PFHnDs可以被光学触发进行汽化,从而导致空间静止的,暂时的微气泡。汽化的PFHnD在超声成像中会回声数秒至数百毫秒,然后再凝结为天然的,低回声的液态纳米液滴状态。回声的衰减,即在超声成像中来自光学触发的PFHnD的超声信号的动态行为,可以使用高帧频超声成像来捕获。我们探索通过改变超声成像脉冲的相位来操纵光学触发的PFHnDs在超声成像中的回声动力学的可能性。具体地,超声成像系统被编程为发射具有相反极性的两个成像脉冲。我们表明,成像脉冲相位可以影响超声成像中PFHnD回声的幅度和时间行为。这项研究的结果表明,如果纳米液滴是由从稀疏压力开始的超声脉冲成像的,则超声回波的产生能力显着提高(改善了约78%),而光学触发的PFHnD的高回声时间则明显更长(约有四倍)。脉冲从压缩压力开始。我们的发现对于在需要检测单个或低浓度PFHnD的超分辨率成像和分子成像等应用中,对液滴的对比度增强超声成像具有直接而重要的意义。

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