论文标题
空化阈值的核尺寸分布的声学测量值
Acoustic measurements of the nucleus size distribution at the cavitation threshold
论文作者
论文摘要
了解诊断超声中的空化生物效应和控制空化介导的组织消融中的空化生物效应至关重要。同质的气蚀阈值是对需要空气控制的各种应用具有公认重要性的内在材料。但是,水中空化阈值的声学测量与经典成核理论预测的阈值不同。通过将新的方法与数值建模的单个气泡相结合,以获得与首先与离子估计的核分布相一致的核大小分布,从而解释了这种持续的差异。我们将阈值处的声气膜视为具有特征性核尺寸分布的异质气膜的可再现亚型。对细胞核大小分布的了解可以激发新的方法,以实现水,组织和其他各种培养基中的空气控制。
Understanding the acoustic cavitation threshold is essential for minimizing cavitation bioeffects in diagnostic ultrasound and for controlling cavitation--mediated tissue ablation in focused ultrasound procedures. The homogeneous cavitation threshold is an intrinsic material property of recognized importance to a variety of applications requiring cavitation control. However, acoustic measurements of the cavitation threshold in water differ from those predicted by classical nucleation theories. This persistent discrepancy is explained by combining novel methods for acoustically nucleating single bubbles at threshold with numerical modeling to obtain a nucleus size distribution consistent with first--principles estimates for ion--stabilized nucleii. We identify acoustic cavitation at threshold as a reproducible subtype of heterogeneous cavitation with a characteristic nucleus size distribution. Knowledge of the nucleus size distribution could inspire new approaches for achieving cavitation control in water, tissue, and a variety of other media.