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使用双被动空化检测法测定单个超声造影剂微泡的激发后阈值。

Determination of postexcitation thresholds for single ultrasound contrast agent microbubbles using double passive cavitation detection.

作者信息

King Daniel A, Malloy Michael J, Roberts Alayna C, Haak Alexander, Yoder Christian C, O'Brien William D

机构信息

Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, 1206 W Green Street, Urbana, Illinois 61801, USA.

出版信息

J Acoust Soc Am. 2010 Jun;127(6):3449-55. doi: 10.1121/1.3373405.

Abstract

This work presents experimental responses of single ultrasound contrast agents to short, large amplitude pulses, characterized using double passive cavitation detection. In this technique, two matched, focused receive transducers were aligned orthogonally to capture the acoustic response of a microbubble from within the overlapping confocal region. The microbubbles were categorized according to a classification scheme based on the presence or absence of postexcitation signals, which are secondary broadband spikes following the principle oscillatory response of the ultrasound contrast agent and are indicative of the transient collapse of the microbubble. Experiments were conducted varying insonifying frequencies (0.9, 2.8, 4.6, and 7.1 MHz) and peak rarefactional pressures (200 kPa to 6.2 MPa) for two types of contrast agents (Definity and Optison). Results were fit using logistic regression analysis to define pressure thresholds where at least 5% and 50% of the microbubble populations collapsed for each frequency. These thresholds were found to occur at lower pressures for Definity than for Optison over the range of frequencies studied; additionally, the thresholds occurred at lower pressures with lower frequencies for both microbubble types in most cases, though this trend did not follow a mechanical index scaling.

摘要

这项工作展示了单个超声造影剂对短时间、大幅度脉冲的实验响应,采用双被动空化检测进行表征。在该技术中,两个匹配的聚焦接收换能器正交排列,以捕捉来自重叠共焦区域内微泡的声学响应。微泡根据基于激发后信号的有无的分类方案进行分类,激发后信号是继超声造影剂的主要振荡响应之后的二次宽带尖峰,指示微泡的瞬态塌陷。针对两种造影剂(Definity和Optison),在不同的声频率(0.9、2.8、4.6和7.1兆赫兹)和峰值稀疏压力(200千帕至6.2兆帕)下进行了实验。使用逻辑回归分析对结果进行拟合,以确定每种频率下至少5%和50%的微泡群体发生塌陷的压力阈值。在所研究的频率范围内,发现Definity的这些阈值出现在比Optison更低的压力下;此外,在大多数情况下,两种微泡类型的阈值在较低频率下出现在更低的压力下,尽管这种趋势并不遵循机械指数标度。

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