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A novel method for estimating the focal size of two confocal high-intensity focused ultrasound transducers

机译:一种估计两个共聚焦高强度聚焦超声换能器焦距的新颖方法

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Estimating the focal size and position of a high-intensity focused ultrasound (HIFU) transducer remains a challenge since traditional methods, such as hydrophone scanning or schlieren imaging, cannot tolerate high pressures, are directional, or provide low resolution. The difficulties increase when dealing with the complex beam pattern of a multielement HIFU transducer array, e.g., two transducers facing each other. In the present study we show a novel approach to the visualization of the HIFU focus by using shockwave-generated bubbles and a diagnostic B-mode scanner. Bubbles were generated and pushed by shock waves toward the HIFU beam, and were trapped in its pressure valleys. These trapped bubbles moved along the pressure valleys and thereby delineated the shape and size of the HIFU beam. The main and sidelobes of 1.1 - and 3.5 MHz HIFU beams were clearly visible, and could be measured with a millimeter resolution. The combined foci could also be visualized by observing the generation of sustained inertial cavitation and enhanced scattering. The results of this study further demonstrate the possibility of reducing the inertial cavitation threshold by the local introduction of shock wave-generated bubbles, which might be useful when bubble generation and cavitation-related bioeffects are intended within a small region in vivo. (c) 2005 Acoustical Society of America.
机译:估计高强度聚焦超声(HIFU)换能器的焦距和位置仍然是一个挑战,因为传统方法(如水听器扫描或schlieren成像)无法承受高压,定向或提供低分辨率。当处理多元件HIFU换能器阵列(例如,两个彼此面对的换能器)的复杂波束图案时,困难增加。在本研究中,我们通过使用冲击波生成的气泡和诊断性B模式扫描仪,展示了HIFU焦点可视化的新方法。气泡产生并被冲击波推向HIFU光束,并被困在其压力谷中。这些捕获的气泡沿着压力谷移动,从而描绘出HIFU光束的形状和大小。 1.1-和3.5 MHz HIFU光束的主瓣和旁瓣清晰可见,可以用毫米分辨率测量。通过观察持续的惯性空化和增强的散射,还可以将组合的焦点可视化。这项研究的结果进一步证明了通过局部引入冲击波产生的气泡来降低惯性空化阈值的可能性,当在体内的小区域内产生气泡和与空化相关的生物效应时,这可能会很有用。 (c)2005年美国声学学会。

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