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Promoting inertial cavitation by nonlinear frequency mixing in a bifrequency focused ultrasound beam

机译:在双频聚焦超声束中通过非线性混频促进惯性空化

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Enhancing cavitation activity with minimal acoustic intensities could be interesting in a variety of therapeutic applications where mechanical effects of cavitation are needed with minimal heating of surrounding tissues. The present work focuses on the relative efficiency of a signal combining two neighbouring frequencies and a one-frequency signal for initiating ultrasound inertial cavitation. Experiments were carried out in a water tank, using a 550 kHz piezoelectric composite spherical transducer focused on targets with 46 μm roughness. The acoustic signal scattered, either by the target or by the cavitation bubbles, is filtered using a spectral and cepstral-like method to obtain an inertial cavitation activity measurement. The ultrasound excitations consist of 1.8 ms single bursts of single frequency f_0 = 550 kHz excitation, in the monofrequency case, and of dual frequency f_1 = 535 kHz and f_2 = 565 kHz excitation, in the bifrequency case. It is shown that depending on the value of the monofrequency cavitation threshold intensity the bifrequency excitation can increase or reduce the cavitation threshold. The analysis of the thresholds indicates that the mechanisms involved are nonlinear. The progress of the cavitation activity beyond the cavitation threshold is also studied. The slope of the cavitation activity considered as a function of the acoustic intensity is always steeper in the case of the bifrequency excitation. This means that the delimitation of the region where cavitation occurs should be cleaner than with a classical monofrequency excitation.
机译:在需要空化的机械作用且周围组织受热最少的各种治疗应用中,以最小的声音强度增强空化活动可能是令人感兴趣的。本工作着眼于将两个相邻频率和一个频率信号相结合以启动超声惯性空化的信号的相对效率。实验是在水箱中进行的,使用的是550 kHz压电复合球形换能器,聚焦在粗糙度为46μm的目标上。通过目标或空化气泡散射的声信号使用类似于频谱和倒频谱的方法进行滤波,以获取惯性空化活动测量结果。在单频情况下,超声激励包括1.8 ms单脉冲,单频率f_0 = 550 kHz激励,在双频情况下,由双频率f_1 = 535 kHz和f_2 = 565 kHz激励组成。结果表明,取决于单频空化阈值强度的值,双频激发可以增加或降低空化阈值。阈值分析表明所涉及的机制是非线性的。还研究了空化活动超出空化阈值的过程。在双频激励的情况下,被视作声强的空化活动的斜率总是较陡的。这意味着,与传统的单频激励相比,发生气蚀的区域的边界应更清晰。

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