Guédra Matthieu, Cornu Corentin, Inserra Claude
Univ Lyon, Université Lyon 1, INSERM, LabTAU, F-69003 Lyon, France.
Univ Lyon, Université Lyon 1, INSERM, LabTAU, F-69003 Lyon, France.
Ultrason Sonochem. 2017 Sep;38:168-173. doi: 10.1016/j.ultsonch.2017.03.010. Epub 2017 Mar 9.
The subharmonic emission of sound coming from the nonlinear response of a bubble population is the most used indicator for stable cavitation. When driven at twice their resonance frequency, bubbles can exhibit subharmonic spherical oscillations if the acoustic pressure amplitude exceeds a threshold value. Although various theoretical derivations exist for the subharmonic emission by free or coated bubbles, they all rest on the single bubble model. In this paper, we propose an analytical expression of the subharmonic threshold for interacting bubbles in a homogeneous, monodisperse cloud. This theory predicts a shift of the subharmonic resonance frequency and a decrease of the corresponding pressure threshold due to the interactions. For a given sonication frequency, these results show that an optimal value of the interaction strength (i.e. the number density of bubbles) can be found for which the subharmonic threshold is minimum, which is consistent with recently published experiments conducted on ultrasound contrast agents.
由气泡群体的非线性响应产生的次谐波声发射是稳定空化最常用的指标。当以两倍于其共振频率驱动时,如果声压幅值超过阈值,气泡会呈现次谐波球形振荡。尽管对于自由或包覆气泡的次谐波发射存在各种理论推导,但它们都基于单气泡模型。在本文中,我们提出了均匀单分散气泡群中相互作用气泡的次谐波阈值的解析表达式。该理论预测,由于相互作用,次谐波共振频率会发生偏移,相应的压力阈值会降低。对于给定的超声频率,这些结果表明,可以找到一个相互作用强度(即气泡数密度)的最佳值,此时次谐波阈值最小,这与最近发表的关于超声造影剂的实验结果一致。