首页> 外文期刊>The Journal of the Acoustical Society of America >Control of inertial acoustic cavitation in pulsed sonication using a real-time feedback loop system
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Control of inertial acoustic cavitation in pulsed sonication using a real-time feedback loop system

机译:使用实时反馈回路系统控制脉冲超声中的惯性声空化

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摘要

Owing to the complex behavior of ultrasound-induced bubble clouds (nucleation, linear and nonlinear oscillations, collapse), acoustic cavitation remains a hardly controllable phenomenon, leading to poorly reproducible ultrasound-based therapies. A better control of the various aspects of cavitation phenomena for in vivo applications is a key requirement to improve emerging ultrasound therapies. Previous publications have reported on systems performing regulation of acoustic cavitation in continuous sonication when applied in vitro, but the main challenge today is to achieve real-time control of cavitation activity in pulsed sonication when used in vivo. The present work aims at developing a system to control acoustic cavitation in a pulsed wave condition using a real-time feedback loop. The experimental setup consists of a water bath in which is submerged a focused transducer (pulsed waves, frequency 550 kHz) used for sonication and a hydrophone used to listen to inertial cavitation. The designed regulation process allows the cavitation activity to be controlled through a 300 μs feedback loop. Without regulation, cavitation exhibits numerous bursts of intense activity and large variations of inertial cavitation level over time. In a regulated regime, the control of inertial cavitation activity within a pulse leads to consistent cavitation levels over time with an enhancement of the reproducibility.
机译:由于超声引起的气泡云的复杂行为(成核,线性和非线性振荡,坍塌),声空化仍然是很难控制的现象,导致基于超声的疗法的可重复性差。对于体内应用而言,更好地控制空化现象的各个方面是改进新兴超声疗法的关键要求。先前的出版物已经报道了在体外应用时在连续超声处理中执行声空化调节的系统,但是当今的主要挑战是在体内使用时实现脉冲超声处理中空化活性的实时控制。本工作旨在开发一种使用实时反馈回路在脉冲波条件下控制声空化的系统。实验装置包括一个水浴,在水浴中浸没了用于超声处理的聚焦换能器(脉冲波,频率550 kHz)和用于听惯性空化的水听器。设计的调节过程允许通过300μs反馈回路控制空化活动。在没有调节的情况下,空化会表现出大量剧烈活动,并且惯性空化水平会随时间变化很大。在调节状态下,控制脉冲内的惯性空化活动会随着时间的流逝而保持一致的空化水平,从而提高可重复性。

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