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Laser-scanning Doppler photoacoustic microscopy based on temporal correlation

机译:基于时间相关性的激光扫描多普勒光声显微镜

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摘要

We present a methodology to measure absolute flow velocity using laser-scanning photoacoustic microscopy. To obtain the Doppler angle, the angle between ultrasonic detection axis and flow direction, we extracted the distances between the transducer and three adjacent scanning points along the flow and repeatedly applied the law of cosines. To measure flow velocity along the ultrasonic detection axis, we calculated the time shift between two consecutive photoacoustic waves at the same scanning point, then converted the time shift to velocity according to the sound velocity and time interval between two laser illuminations. We verified our method by imaging flow phantoms.
机译:我们提出了一种使用激光扫描光声显微镜测量绝对流速的方法。为了获得多普勒角,超声检测轴与流动方向之间的夹角,我们提取了换能器与沿流动的三个相邻扫描点之间的距离,并反复应用余弦定律。为了测量沿超声波检测轴的流速,我们计算了在相同扫描点处两个连续光声波之间的时间偏移,然后根据声速和两次激光照射之间的时间间隔将时间偏移转换为速度。我们通过对流模型进行成像验证了我们的方法。

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