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Geometrical characterization of the cavitation bubble clouds produced by a clinical shock wave device

机译:临床冲击波装置产生的空化泡沫云的几何特征

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This study was to optically visualize the cavitation bubbles produced by a clinical shock wave and to look into their geometric features of the resulting cavitation bubbles in relation to the driving shock wave field. A clinical shock wave therapeutic system was taken for shock wave production. The shock wave induced cavitation bubbles were captured by a professional camera under the illumination of a micro-pulse LED light. The light exposure was set to last for the whole life time of bubbles from formation to subsequent collapses. It was shown that the cavitation bubbles appeared mostly in the vicinity of the focus. The bubbles became more and larger as approaching to the focus. The cavitation bubbles formed jet streams which became enlarged (stronger) as the shock wave device output setting increased. The bubble cloud boundary was reasonably fitted to an elongated ellipsoid characteristically similar to the acoustic focal area. The bubble clouds were enlarged as the output setting increased. The geometric features of the cavitation bubbles characteristically similar to those of the focusing acoustic field have potential to provide the therapeutic focal information without time consuming hydrophone measurements of the shock wave field causing damages of the expensive sensor. The present study is limited to the static afterimages of the cavitation bubbles and investigation including the bubble dynamics is suggested to deliver the more realistic therapeutic area of the shock wave therapy.
机译:该研究是光学地可视化由临床冲击波产生的空化泡,并研究所得到的空化气泡的几何特征,相对于驱动冲击波场。采取临床冲击波治疗系统进行冲击波生产。在微脉冲LED光的照明下,通过专业摄像机捕获冲击波诱导的空化气泡。光曝光被设定为持续到从形成到后续坍塌的气泡的整个寿命时间。结果表明,空化气泡主要出现在焦点附近。气泡变得越来越大,接近焦点。随着冲击波装置输出设置增加,空化气泡形成了变得增大(更强)的喷射流。气泡云边界合理地安装在细长的椭球上,特征在于与声学焦点区域相似。随着输出设置增加,气泡云被扩大。空化气泡的几何特征与聚焦声场相似的空化气泡具有潜力,以提供治疗焦点信息,而不耗时地消耗昂贵传感器损坏的冲击波场的水听器测量。本研究仅限于静态余下的空化泡沫和包括气泡动力学的调查,建议提供冲击波疗法的更现实的治疗区域。

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