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Characterising focused ultrasound via high speed shadowgraphic imaging at 10 million frames per second

机译:通过高速影子图成像以每秒1000万帧的高速影子成像表征聚焦超声

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In this paper, ultra-high speed shadowgraphic imaging at 10 × 10~6 frames-per-second with an effective temporal resolution of 10ns per frame, is used to characterise aspects of the acoustic field, the medium of propagation, and phase characterization of a needle hydrophone. Specifically, at the third harmonic of the driving transducer, constructive and destructive interference is observed in close proximity to the needle hydrophone, due to reflections of the propagating field from the needle hydrophone. At the fundamental, speed of sound estimation from cross-correlating temporal changes in gray scale value of two individual pixels along propagating axis. Furthermore, phase characterisation of needle hydrophone from 0.7MHz to 1MHz and at 1.2MHz, using deconvolved needle hydrophone data at the fundamental driving frequency, 1.1MHz, to estimate a propagation time delay between pixel sample position and deconvolved waveform. Most reliable results for both speed of sound estimation and phase characterisation of the needle hydrophone are achieved using optical data close to the acoustic focus, where both measurements are in agreement with theory and calibration data.
机译:在本文中,以每帧10ns的有效时间分辨率为10×10〜6帧的超高速影像成像用于表征声场的方面,传播的介质和相位表征针水电器。具体而言,在第三谐波的驱动换能器的,建设性和破坏性干扰在靠近针水听器观察到的,由于从针水听器的传播场的反射。在基本上,声音估计的速度从互相关时间变化沿传播轴的两个单独像素的灰度值。此外,使用0.7MHz至1MHz和1.2MHz的针水电器的相位表征在1.2MHz处,在基本驱动频率,1.1MHz处使用DecoNvolve针水电管数据来估计像素样本位置和去卷积波形之间的传播时间延迟。使用靠近声学焦点的光学数据实现了针对主干琴的声音估计和相位表征的最可靠的结果,其中两种测量都与理论和校准数据一致。

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