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Ultrasound-Stimulated Mutual Interaction Forces between Optically Configured Micro-Bubble Pairs

机译:光学配置的微泡对之间的超声刺激相互相互作用

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The mutual interaction between two oscillating encapsulated microbubbles was investigated using a novel optical trapping arrangement. This approach facilitated the development of an arbitrary, stable, initial spatial configuration for a two-bubble system. Critically, exercising optical control over such a binary bubble system meant that it could be isolated from the resident population of microbubbles during exposure to ultrasound. This ensured that any early stage dynamical evolution of the system was dominated by the mutual interaction of the two bubbles in view, rather than any extraneous influence arising from `crosstalk' with the rest of the bubble population. We observed, using high speed microphotography at 4×105 frames per second, that the action of secondary radiation forces leads to mutual bubble attraction. Phenomena such as coalescence and `bounce' were observed. Estimates of the microbubble [SonovueTM] compressibility could also be made, and tally well with published values obtained for other shelled contrast agents.
机译:使用新颖的光学诱捕装置研究了两个振荡封装的微泡之间的相互相互作用。这种方法促进了双泡系统的任意,稳定,初始空间配置的开发。批判性地,在这种二元气泡系统上锻炼光学控制意味着它可以在暴露于超声波期间从微泡的常驻群体中分离。这确保了系统的任何早期动态演化都是由两种气泡的相互相互作用的主导,而不是在与其他泡沫群体中的串扰引起的任何外来影响。我们观察到每秒4×105帧的高速显微镜摄影,即二次辐射力的作用导致相互泡沫吸引力。观察到聚结和“弹跳”等现象。还可以制备微泡[SONOVUETM]可压缩性的估计,并且与其他壳造影剂获得的公开值良好。

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