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Therapeutic Bubbles: Basic Principles of Cavitation in Therapeutic Ultrasound

机译:治疗气泡:治疗超声中空化的基本原理

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At therapeutic intensities, the application of ultrasound is often accompanied by bubble activity. Bubbles concentrate (by orders of magnitude) acoustic energy and convert that acoustic energy into mechanical, thermal, chemical or frequency-shifted acoustic energy. Depending on the specific clinical context, bubble and cavitation activity may be welcome or unwelcome. Whether desirable or not, certain basic phenomena may be observed, and certain basic principles deduced which can guide researchers in their efforts either to avoid or to exploit cavitation. Towards that end this paper will introduce the fundamentals of bubble dynamics. A bestiary of bubble phenomena and related concepts (such as the Blake threshold, inertial cavitation, shape instabilities, rectified diffusion) will be discussed. The dependence of bubble dynamics on control parameters (acoustic frequency and pressure, pulse parameters) and material properties (shear viscosity, surface tension, temperature, elasticity) will be considered. Experimental techniques and diagnostics for bubble detection and monitoring will be briefly mentioned. Tools for modeling bubble dynamics and their effects will be introduced. Some consequences of bubbles and cavitation activity in vivo (both physical and biological) will be presented, drawing on the example of bubbles in high-intensity focused ultrasound (HIFU) applications. Finally, recommendations of techniques for either avoiding or enhancing (and maybe controlling) cavitation will be proffered.
机译:在治疗强度下,超声波的应用通常伴有泡沫活性。气泡浓缩(按幅度级)声能,并将声能转化为机械,热,化学或频移的声能。根据具体的临床背景,可能会受到欢迎或不受欢迎的泡沫和空化活动。无论是否可取,也可以观察到某些基本现象,所指导的某些基本原则可以指导研究人员避免或利用空化。朝向这一点,本文将介绍泡沫动态的基本面。将讨论泡沫现象的葡萄酒和相关概念(例如制版阈值,惯性空化,形状不稳定性,整流扩散)。将考虑气泡动力学对控制参数(声频和压力,脉冲参数)和材料性质(剪切粘度,表面张力,温度,弹性)的依赖性。将简要提及用于泡沫检测和监测的实验技术和诊断。将介绍用于建模泡沫动力学及其效果的工具。将呈现体内(物理和生物学)在体内气泡和空化活动的一些后果,在高强度聚焦超声(HIFU)应用中的泡沫的示例上绘制。最后,将提供避免或增强(和可以控制)空化的技术推荐。

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