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填充气体对磷脂超声造影剂次谐波发射的影响。

Impact of Filling Gas on Subharmonic Emissions of Phospholipid Ultrasound Contrast Agents.

作者信息

Kanbar Emma, Fouan Damien, Sennoga Charles A, Doinikov Alexander A, Bouakaz Ayache

机构信息

Imagerie et Cerveau, Inserm UMR U930, Université François Rabelais, Tours, France.

Imagerie et Cerveau, Inserm UMR U930, Université François Rabelais, Tours, France.

出版信息

Ultrasound Med Biol. 2017 May;43(5):1004-1015. doi: 10.1016/j.ultrasmedbio.2016.12.013. Epub 2017 Feb 14.

Abstract

Subharmonic signals backscattered from gas-filled lipid-shelled microbubbles have generated significant research interest because they can improve the detection and sensitivity of contrast-enhanced ultrasound imaging. However, the emission of subharmonic signals is strongly characterized by a temporal dependence, the origins of which have not been sufficiently elucidated. The features that influence subharmonic emissions need to be identified not only to better develop next-generation microbubble contrast agents, but also to develop more efficient subharmonic imaging (SHI) modes and therapeutic strategies. We examined the effect of microbubble filling gas on subharmonic emissions. Phospholipid shelled-microbubbles with different gaseous compositions such as sulfur hexafluoride (SF), octafluoropropane (CF) or decafluorobutane (CF), nitrogen (N)/CF or air were insonated using a driving frequency of 10 MHz and peak negative pressure of 450 kPa, and their acoustic responses were tracked by monitoring both second harmonic and subharmonic emissions. Microbubbles were first acoustically characterized with their original gas and then re-characterized after substitution of the original gas with air, SF or CF. A measureable change in intensity of the subharmonic emissions with a 20- to 40-min delayed onset and increasing subharmonic emissions of the order 12-18 dB was recorded for microbubbles filled with CF. Substitution of CF with air eliminated the earlier observed delay in subharmonic emissions. Significantly, substitution of SF for CF successfully triggered a delay in the subharmonic emissions of the resultant agents, whereas substitution of CF for SF eliminated the earlier observed suppression of subharmonic emissions, clearly suggesting that the type of filling gas contained in the microbubble agent influences subharmonic emissions in a time-dependent manner. Because our agents were dispersed in air-stabilized phosphate-buffered saline, these results suggest that the diffusivity of the gas from the agent to the surrounding medium is correlated with the time-dependent evolution of subharmonic emissions.

摘要

从充气脂质壳微泡反向散射的次谐波信号引发了大量研究兴趣,因为它们可以提高超声造影成像的检测能力和灵敏度。然而,次谐波信号的发射具有强烈的时间依赖性,其起源尚未得到充分阐明。不仅为了更好地开发下一代微泡造影剂,也为了开发更有效的次谐波成像(SHI)模式和治疗策略,需要确定影响次谐波发射的特征。我们研究了微泡填充气体对次谐波发射的影响。使用10MHz的驱动频率和450kPa的峰值负压对含有不同气体成分(如六氟化硫(SF)、八氟丙烷(CF)或十氟丁烷(CF)、氮气(N)/CF或空气)的磷脂壳微泡进行超声处理,并通过监测二次谐波和次谐波发射来跟踪它们的声学响应。微泡首先用其原始气体进行声学表征,然后在用空气、SF或CF替代原始气体后重新进行表征。对于填充CF的微泡,记录到次谐波发射强度有可测量的变化,延迟开始时间为20至40分钟,次谐波发射增加了12至18dB。用空气替代CF消除了早期观察到的次谐波发射延迟。值得注意的是,用SF替代CF成功地引发了所得制剂次谐波发射的延迟,而用CF替代SF消除了早期观察到的次谐波发射抑制,这清楚地表明微泡制剂中所含填充气体的类型以时间依赖的方式影响次谐波发射。由于我们的制剂分散在空气稳定的磷酸盐缓冲盐水中,这些结果表明气体从制剂向周围介质的扩散率与次谐波发射的时间依赖性演变相关。

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