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Vaporization Detection Imaging: A Technique for Imaging Low-Boiling-Point Phase-Change Contrast Agents with a High Depth of Penetration and Contrast-to-Tissue Ratio

机译:蒸发检测成像:一种用于成像低沸点相变造影剂的技术,具有高度的渗透和对比度与组织比

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Phase-change contrast agents (PCCAs) possess advantages over microbubble contrast agents, such as the ability to extravasate and circulate longer in the vasculature that could enhance the diagnostic capabilities of contrast-enhanced ultrasound. PCCAs typically have a liquid perfluorocarbon (PFC) core that can be vaporized into echogenic microbubbles. Vaporization of submicron agents filled with liquid PFCs at body temperature usually requires therapeutic pressures higher than typically used for diagnostic imaging, but low-boiling-point PCCAs using decafluorobutane or octafluoropropane can be vaporized using pressures in the diagnostic imaging regime. Low-boiling-point PCCAs produce a unique acoustic signature that can be separated from tissue and bubble signals to make images with high contrast-to-tissue ratios. In this work, we explore the effect of pulse length and concentration on the vaporization signal of PCCAs and a new technique to capture and use the signals to make high contrast-to-tissue ratio imagesin vivo. The results indicate that using a short pulse may be ideal for imaging because it does not interact with created bubbles but still produces strong signals for making images. Furthermore, it was found that capturing PCCA vaporization signals produced higher contrast-to-tissue ratio values and better depth of penetration than imaging the bubbles generated by droplet activation using conventional contrast imaging techniques. The resolution of the vaporization signal images is poor because of the low frequency of the signals, but their high sensitivity may be used for applications such as molecular imaging, where the detection of small numbers of contrast agents is important.
机译:相变造影剂(PCCAs)具有优于微泡造影剂的优点,例如在脉管系统中静置和循环的能力,这可以提高对比增强超声的诊断能力。 PCCA通常具有液体全氟化碳(PFC)核心,其可以蒸发成谐波微泡。在体温下填充液体PFCs的亚微米试剂的蒸发通常需要高于通常用于诊断成像的治疗压力,但是使用甲氟丁烷或八氟丙烷的低沸点PCCA可以在诊断成像状态下使用压力蒸发。低沸点PCCAS产生独特的声学特征,可以与组织和气泡信号分开以使图像具有高对比度与组织比率。在这项工作中,我们探讨了脉冲长度和浓度对PCCA的蒸发信号的影响和捕获的新技术,并使用信号使得高对比度与组织比彗形倍增。结果表明,使用短脉冲可能是成像的理想选择,因为它不会与产生的气泡相互作用,但仍然产生用于制造图像的强信号。此外,发现捕获PCCA蒸发信号产生更高的对比度与组织比值,并且比使用传统的对比度成像技术成像由液滴激活产生的气泡的成像的更好的渗透深度。由于信号的低频率,汽化信号图像的分辨率差,但它们的高灵敏度可用于诸如分子成像的应用,其中少量造影剂的检测是重要的。

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