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Comparable analysis of bubble translation due to acoustic radiation force based on simultaneous acoustical and optical observation

机译:基于同时声学和光学观察的声学辐射力引起的泡沫翻译的可比分析

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摘要

Contrast-enhanced ultrasound imaging using acoustic radiation force, called contrast-enhanced active Doppler ultrasound (CEADUS) imaging, has been proposed for visualizing lymph channels filled with stationary fluid. Based on optical observations and acoustical evaluation, the behaviour of bubbles in a simulated channel during ultrasound exposure was investigated under four conditions for negative peak sound pressure (P-np), at centre frequency of ultrasound and pulse repetition frequency of 15 MHz and 1 kHz, respectively. There was good correlation between the time changes of mean translational velocity for optical evaluation (V-OPT) and acoustical evaluation (V-US). In addition, the maxima of V-OPT and V-US were correlated (R = 0.665) and showed a similar trend proportional to the square of Pnp. These results strongly suggest that the acoustically-evaluated bubble translation has information equal to optically-evaluated one, meaning that the simultaneous observation system is useful to understand the bubble behaviours under CEADUS imaging. (C) 2020 The Japan Society of Applied Physics
机译:已经提出了使用声学辐射力的对比度增强的超声成像,称为对比度增强的有源多普勒超声(Ceadus)成像,用于可视化填充有固定流体的淋巴通道。基于光学观察和声学评估,在超声曝光期间在模拟通道中进行模拟通道中的气泡的行为在4个条件下进行负峰值声压(P-NP),在超声波和脉冲重复频率的中心频率为15 MHz和1 kHz , 分别。光学评估(V-OPT)和声学评估(V-US)的平均平移速度的时间变化与良好的相关性之间存在良好的相关性。此外,V-opt和V-US的最大值是相关的(r = 0.665),并显示与PNP的正方形成比例的类似趋势。这些结果强烈建议,声学评估的气泡平移具有等于光学评估的信息,这意味着同时观察系统可用于了解Ceadus成像下的泡沫行为。 (c)2020日本应用物理学会

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