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Performance characterisation of a passive cavitation detector optimised for subharmonic periodic shock waves from acoustic cavitation in MHz and sub- MHz ultrasound

机译:用于MHz和子MHz超声波声空化的子发周式冲击波优化的无源空化检测器的性能表征

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摘要

We describe the design, construction and characterisation of a broadband passive cavitation detector, with the specific aim of detecting low frequency components of periodic shock waves, with high sensitivity. A finite element model is used to guide selection of matching and backing layers for the shock wave passive cavitation detector (swPCD), and the performance is evaluated against a commercially available device. Validation of the model, and characterisation of the swPCD is achieved through experimental detection of laser-plasma bubble collapse shock waves. The final swPCD design is 20 dB more sensitive to the subhannonic component, from acoustic cavitation driven at 220 kHz, than the comparable commercial device. This work may be significant for monitoring cavitation in medical applications, where sensitive detection is critical, and higher frequencies are more readily absorbed by tissue.
机译:我们描述了一种宽带被动空化检测器的设计、结构和特性,其具体目的是检测具有高灵敏度的周期性冲击波的低频分量。利用有限元模型指导冲击波被动空化检测器(swPCD)匹配层和背衬层的选择,并用商用设备对其性能进行了评估。通过对激光等离子体气泡崩塌冲击波的实验检测,对模型进行了验证,并对swPCD进行了表征。最终的swPCD设计比同类商用设备对220 kHz下驱动的声空化产生的亚谐分量更敏感20 dB。这项工作对于监测医学应用中的气穴具有重要意义,在医学应用中,灵敏的检测至关重要,更高的频率更容易被组织吸收。

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