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Effects of acoustic parameters and bulk fluid properties on acoustic droplet vaporization threshold of perfluoropentane droplets

机译:声学参数和散装流体特性对全氟戊烷液滴声液滴蒸发阈值的影响

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Phase shift droplets vaporizable by acoustic stimulation are better alternatives to conventional ultrasound contrast agents in terms of higher stability and possibility of achieving smaller sizes. This study determines the threshold pressures required to induce acoustic droplet vaporization (ADV) and inertial cavitation (IC) of a suspension of droplets with a perfluoropentane (PFP) core (diameter 400-3000 nm) in a novel tubeless setup using acoustic methods. We further investigate the effects of excitation frequency, pulse lengths, temperature and dissolved gas concentration on both ADV and IC thresholds. We have found that ADV threshold decreases with temperature and increases with frequency. ADV thresholds at all the frequencies studied here occurred at lower rarefactional pressures than IC thresholds indicating that phase transition precedes inertial cavitation. The ADV and the IC thresholds did not change when the experiments were performed in degassed conditions. The scattered response from droplets above the ADV threshold was also found to qualitatively match with that of independently prepared lipid-coated microbubble suspensions in magnitude as well as trends.
机译:通过声学刺激可蒸发的相移液滴是在更高的稳定性和实现较小尺寸的可能性方面的常规超声造影剂的更好的替代方案。本研究确定使用声学方法在新颖的管道设置中诱导液滴悬浮液(PFP)芯(直径400-3000nm)的液滴蒸发(ADV)和惯性空化(IC)所需的阈值压力。我们进一步研究了激发频率,脉冲长度,温度和溶解气体浓度对ADV和IC阈值的影响。我们发现普通阈值随温度降低,频率增加。这里研究的所有频率的ADV阈值发生在比IC阈值的较低稀释压力下,指示相变前面的惯性空化。当在脱气条件下进行实验时,ADV和IC阈值没有改变。来自潜水的散射反应还发现了普遍的阈值,与幅度的独立制备的脂质涂覆的微泡悬浮液以及趋势进行定性匹配。

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