Using passive cavitation detection to observe postexcitation response of ultrasound contrast agents

D. King, M. Santin, M. J. Malloy, A. Roberts, A. Haak, J. Foiret, S. Haupert, S. Jafari, L. Bridal, W. O’Brien
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引用次数: 1

Abstract

Passive cavitation detection was used to improve the experimental characterization of single ultrasound contrast agent microbubble responses to short, large amplitude pulses. Two situations were examined: isolated microbubbles in an unconstrained environment, and isolated microbubbles flowing through a tube. The microbubbles were categorized according to a classification scheme based on the presence or absence of postexcitation signals, which are secondary broadband spikes that may follow the principle oscillation of the ultrasound contrast agent in response to an insonifying pulse. Experiments were conducted for different frequencies, peak rarefactional pressures, flow rates, and types of microbubble. Postexcitation activity was found to increase as frequency decreased, acoustic pressure increased, and flow rate increased. Additionally, lipid-shelled microbubbles were found to exhibit greater postexcitation at lower acoustic pressure thresholds than albumin-shelled microbubbles.
采用被动空化检测法观察超声造影剂的激发后反应
采用被动空化检测改进超声造影剂微泡对短、大振幅脉冲响应的实验表征。研究了两种情况:在不受约束的环境中分离的微气泡,以及在管道中流动的分离微气泡。微泡根据存在或不存在后激励信号的分类方案进行分类,后激励信号是二次宽带尖峰,可能遵循超声造影剂响应于失谐脉冲的原理振荡。实验针对不同频率、峰值分离压力、流量和微泡类型进行。激发后活动随着频率的降低、声压的增加和流量的增加而增加。此外,脂质壳微泡在较低的声压阈值下比白蛋白壳微泡表现出更大的后激发。
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