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Acoustic method for real-time visualization of microbubble movements and rupture

机译:实时可视化微气泡运动和破裂的声学方法

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The behavior of microbubbles during insonation is typically observed through optical methods based on the use of high frame-rate cameras. In this paper, a new approach is described, in which a high-speed processing board is coupled to a standard ultrasound TX-RX to interrogate small concentrations of microbubbles suspended in water. The acquired data is presented simultaneously on two displays. In a classical M-mode display, distinct traces indicate the amplitude and position of individual bubble-echoes over time. In the multigate Doppler display, the instantaneous velocities of all bubbles intercepted by the US beam are shown. Tests performed in different experimental conditions clearly show how individual microbubbles are pushed away from the transducer depending on the transducer excitation and pressure distribution along the beam axis. Bubble rupture is also clearly shown in both display modes. The new approach thus demonstrates a promising means for the investigation of microbubble behavior in ultrasound fields.
机译:通常在基于高帧速相机的使用的光学方法中观察到声波期间微气泡的行为。在本文中,描述了一种新方法,其中将高速处理板与标准超声波TX-RX耦合,以询问悬浮在水中的小浓度微气泡。所获取的数据同时显示在两个显示器上。在经典的M模式显示中,不同的迹线指示随时间变化的各个气泡回波的幅度和位置。在多闸多普勒显示中,显示了被US光束拦截的所有气泡的瞬时速度。在不同的实验条件下进行的测试清楚地表明了如何根据换能器的激励和沿光束轴的压力分布将单个微气泡推离换能器。在两种显示模式下,气泡破裂也清晰可见。因此,新方法展示了一种有前途的研究超声领域微气泡行为的手段。

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