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Changes in microbubble dynamics near a boundary revealed by combined optical micromanipulation and high-speed imaging

机译:结合光学显微操作和高速成像揭示的边界附近微泡动力学变化

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The authors report optical observations of the change in the dynamics of one and the same ultrasound contrast agent microbubble due to the influence of interfaces and neighboring bubbles. The bubble is excited by a 2.25 MHz ultrasound burst and its oscillations are recorded with an ultrahigh-speed camera at 15 million frames per second. The position of an individual bubble relative to a rigid wall or second bubble is precisely controlled using optical tweezers based on Laguerre-Gaussian laser beams [P. Prentice et al., Opt. Express 12, 593 (2004); V. Garbin et al., Jpn. J. Appl. Phys. 44, 5773 (2005)]. This allows for repeated experiments on the very same bubble and for a quantitative comparison of the effect of boundaries on bubble behavior.
机译:作者报告了由于界面和相邻气泡的影响而引起的一种和相同的超声造影剂微气泡动力学变化的光学观察。气泡由2.25 MHz的超声脉冲激发,并用超高速相机以每秒1500万帧的速度记录气泡的振荡。使用基于Laguerre-Gaussian激光束的光镊精确控制单个气泡相对于刚性壁或第二个气泡的位置[P. Prentice等,选项。 Express 12,593(2004); V.Garbin等,日本J.应用物理44,5773(2005)]。这允许在同一气泡上进行重复实验,并可以定量比较边界对气泡行为的影响。

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