Key Laboratory of Modern Acoustics (MOE), Department of Physics, Collaborative Innovation Center of Advanced Microstructure, Nanjing University, Nanjing 210093, China.
Department of Engineering Science, University of Oxford, Oxford, United
J Acoust Soc Am. 2020 Oct;148(4):EL375. doi: 10.1121/10.0002274.
Acoustic droplet vaporization (ADV) is an important process that enables the theragnostic application of acoustically activated droplets, where the nucleation of inertial cavitation (IC) activity must be precisely controlled. This Letter describes threshold pressure measurements for ADV and acoustic emissions consistent with IC activity of lipid-shelled non-superheated perfluoropentane nanodroplets over a range of physiologically relevant concentrations at 1.1-MHz. Under the frequency investigated, results show that the thresholds were relatively independent of concentration for intermediate concentrations (10, 10, and 10 droplets/ml), thus indicating an optimal range of droplet concentrations for conducting threshold studies. For the highest concentration, the difference between the threshold for IC and the threshold for ADV was greatly reduced, suggesting that it might prove difficult to induce ADV without concomitant IC in applications that employ higher concentrations.
声致雾化(ADV)是一个重要的过程,使声激活液滴的治疗应用成为可能,其中必须精确控制惯性空化(IC)活动的成核。本函描述了在 1.1MHz 下,在生理相关浓度范围内,具有脂质壳的非过冷全氟戊烷纳米液滴的 IC 活性的 ADV 和声学发射的阈值压力测量。在所研究的频率下,结果表明,对于中间浓度(10、10 和 10 个/ml),阈值相对独立于浓度,因此表明进行阈值研究的最佳液滴浓度范围。对于最高浓度,IC 阈值和 ADV 阈值之间的差异大大减小,这表明在使用较高浓度的应用中,可能很难在不伴随 IC 的情况下诱导 ADV。