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首页> 外文期刊>The Journal of the Acoustical Society of America >A dual passive cavitation detector for localized detection of lithotripsy-induced cavitation in vitro
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A dual passive cavitation detector for localized detection of lithotripsy-induced cavitation in vitro

机译:双被动空化检测器,用于体外检测碎石术引起的空化

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摘要

A passive cavitation detector (PCD) identifies cavitation events by sensing acoustic emissions generated by the collapse of bubbles. In this work, a dual passive cavitation detector (dual PCD), consisting of a pair of orthogonal confocal receivers, is described for use in shock wave lithotripsy. Cavitation events are detected by both receivers and can be localized to within 5 mm by the nature of the small intersecting volume of the focal areas of the two receivers in association with a coincidence detection algorithm. A calibration technique, based on the impulse response of the transducer, was employed to estimate radiated pressures at collapse near the bubble. Results are presented for the in vitro cavitation fields of both a clinical and a research electrohydraulic lithotripter. The measured lifetime of the primary growth-and-collapse of the cavitation bubbles increased from 180 to 420 μs as the power setting was increased from 12 to 24 kV. The measured lifetime compared well with calculations based on the Gilmore-Akulichev formulation for bubble dynamics. The radiated acoustic pressure 10 mm from the collapsing cavitation bubble was measured to vary from 4 to 16 MPa with increasing power setting; although the trends agreed with calculations, the predicted values were four times larger than measured values. The axial length of the cavitation field correlated well with the 6-dB region of the acoustic field. However, the width of the cavitation field (10 mm) was significantly narrower than the acoustic field (25 mm) as bubbles appeared to be drawn to the acoustic axis during the collapse. The dual PCD also detected signals from "rebounds," secondary and tertiary growth-and-collapse cycles. The measured rebound time did not agree with calculations from the single-bubble model. The rebounds could be fitted to a Rayleigh collapse model by considering the entire bubble cloud as an effective single bubble. The results from the dual PCD agreed well with images from high-speed photography. The results indicate that single-bubble theory is sufficient to model lithotripsy cavitation dynamics up to time of the main collapse, but that upon collapse bubble cloud dynamics becomes important.
机译:被动空化检测器(PCD)通过检测气泡破裂产生的声发射来识别空化事件。在这项工作中,描述了一种由一对正交共焦接收器组成的双被动空化检测器(双PCD),用于冲击波碎石术。空化事件由两个接收器检测到,并且可以通过与符合检测算法相关的两个接收器焦点区域的小相交体积的性质而定位在5 mm以内。基于换能器的脉冲响应的校准技术被用来估计气泡附近塌陷处的辐射压力。提出了临床和研究电动液压碎石机的体外空化领域的结果。随着功率设置从12 kV增加到24 kV,空化气泡的初次生长期和坍塌的测量寿命从180 s增加到420μs。测得的寿命与基于Gilmore-Akulichev公式的气泡动力学计算结果进行了很好的比较。随功率设置的增加,测得从坍塌的气泡产生的10mm处的辐射声压在4至16 MPa之间变化。尽管趋势与计算结果一致,但预测值是实测值的四倍。空化场的轴向长度与声场的6 dB区域很好地相关。但是,空泡场的宽度(10毫米)比声场(25毫米)要窄得多,因为在坍塌过程中气泡似乎被吸到了声轴上。双PCD还检测到来自“反弹”,第二和第三级生长和崩溃周期的信号。测得的回弹时间与单气泡模型的计算结果不一致。通过将整个气泡云视为有效的单个气泡,可以将回弹拟合为Rayleigh崩溃模型。双PCD的结果与高速摄影的图像非常吻合。结果表明,单气泡理论足以模拟主要崩塌之前的碎石空化动力学,但在崩塌时,气泡云动力学变得很重要。

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