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亚谐波共振下亚微米级超声造影剂声发射的相互作用效应。

Interaction effects on acoustic emissions of submicron ultrasound contrast agents at subharmonic resonances.

作者信息

Tang Hongmei, Xiao Qiao, Fu Jia, Liu Siyuan, Wang Wei, Qin Dui

机构信息

Department of Biomedical Engineering, School of Life Health Information Science and Engineering, Chongqing University of Posts and Telecommunications, Chongqing, People's Republic of China.

Department of Biomedical Engineering, School of Life Health Information Science and Engineering, Chongqing University of Posts and Telecommunications, Chongqing, People's Republic of China; Postdoctoral Workstation of Chongqing General Hospital, Chongqing, People's Republic of China.

出版信息

Ultrasonics. 2025 Apr;148:107553. doi: 10.1016/j.ultras.2024.107553. Epub 2024 Dec 11.

Abstract

Submicron ultrasound contrast agents hold great potential to extend the bubble-mediated theranostics beyond the vasculature, but their acoustic response and the interaction effects between them remain poorly understood. This study set out to numerically examine the interaction effects on the subharmonic oscillations of nanobubbles and the resultant acoustic emissions under subharmonic resonance conditions. Results showed that a negative correlation between bubble size and subharmonic resonance frequency is readily obtained from the radius response curves. Moreover, it was also found that the larger nanobubble in a two-nanobubble system generally acts as the primary determinant for the subharmonic oscillations of the smaller one. Specifically, a larger nanobubble excited at its subharmonic resonance conditions can force a smaller nanobubble to undergo subharmonic oscillations, resulting in the generation of subharmonic acoustic emissions. Conversely, under specific resonance conditions, a smaller nanobubble undergoing subharmonic oscillations can also be restrained by a larger nanobubble that is off-resonance and consequently its subharmonic component disappears. Furthermore, it also clearly demonstrated that the generation of subharmonic resonance is pressure threshold dependent and the subharmonic resonant radius is distinctly reduced as the acoustic pressure increases. By contrast, a larger nanobubble has a lower pressure threshold than that of a smaller one, when subjected to their subharmonic resonance conditions respectively. More importantly, the higher pressure threshold of a smaller nanobubble can be prominently decreased by the interaction effects from a nearby larger nanobubble. For two interacting nanobubbles, the interaction effects strongly depend on the inter-bubble distance, and the farther the two nanobubbles is, the weaker the interaction effects become and even can be ignored. Additionally, the impacts of the lipid shell properties indicated that increasing shell viscoelasticity can increase the subharmonic resonant radius but dampen the subharmonic oscillations and the resultant acoustic emissions, which is more sensitive to the shell viscosity. This study can contribute to a better understanding of the complex interaction effects between submicron ultrasound contrast agents on the resultant acoustic emissions, potentially advancing nanobubble-specific ultrasound applications.

摘要

亚微米级超声造影剂具有巨大潜力,可将气泡介导的治疗诊断学扩展到血管系统之外,但其声学响应以及它们之间的相互作用效应仍知之甚少。本研究旨在通过数值模拟研究在亚谐波共振条件下纳米气泡亚谐波振荡的相互作用效应以及由此产生的声发射。结果表明,从半径响应曲线很容易得到气泡大小与亚谐波共振频率之间的负相关关系。此外,还发现双纳米气泡系统中较大的纳米气泡通常是较小纳米气泡亚谐波振荡的主要决定因素。具体而言,在其亚谐波共振条件下激发的较大纳米气泡可迫使较小纳米气泡发生亚谐波振荡,从而产生亚谐波声发射。相反,在特定共振条件下,发生亚谐波振荡的较小纳米气泡也会受到非共振的较大纳米气泡的抑制,其亚谐波分量随之消失。此外,研究还清楚地表明,亚谐波共振的产生取决于压力阈值,随着声压增加,亚谐波共振半径明显减小。相比之下,当分别处于亚谐波共振条件时,较大纳米气泡的压力阈值低于较小纳米气泡。更重要的是,较小纳米气泡较高的压力阈值可因附近较大纳米气泡的相互作用效应而显著降低。对于两个相互作用的纳米气泡,相互作用效应强烈依赖于气泡间距离,两个纳米气泡距离越远,相互作用效应越弱,甚至可以忽略不计。此外,脂质壳层性质的影响表明,增加壳层粘弹性可增大亚谐波共振半径,但会减弱亚谐波振荡及由此产生的声发射,且对壳层粘度更为敏感。本研究有助于更好地理解亚微米级超声造影剂之间复杂的相互作用效应及其对声发射的影响,有望推动纳米气泡特异性超声应用的发展。

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