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Solving the speckle decorrelation challenge in acousto-optic sensing using tandem nanosecond pulses within the ultrasound period

机译:在超声周期内使用串联纳秒脉冲解决声光传感中的斑点去相关挑战

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摘要

We present a novel acousto-optic (AO) method, based on a nanosecond laser system, which will enable us to obtain AO signals in liquid turbid media. By diverting part of the light in a delay line, we inject tandem pulses with 27 ns separation. The change of the speckle pattern, caused by the ultrasound phase shift, reduces the speckle contrast of the integrated speckle pattern captured in a single camera frame. With these tandem pulses, we were able to perform AO on a 2 cm liquid turbid medium in transmission mode. We show the raw signal and a spatial AO scan of a homogenous water-intralipid sample. This approach is potentially capable of AO probing in vivo, since the acquisition time (of approximately 40 ns) is four orders of magnitude less than the typical time scales of speckle decorrelation found in vivo. The method may eventually enable us to obtain fluence compensated photoacoustic signals generated by the same laser
机译:我们提出一种基于纳秒激光系统的新颖声光(AO)方法,这将使我们能够在液体混浊介质中获得AO信号。通过在延迟线上转移部分光,我们以27 ns的间隔注入串联脉冲。由超声相移引起的斑点图案的变化降低了在单个相机框架中捕获的集成斑点图案的斑点对比度。通过这些串联脉冲,我们能够在2厘米长的液体混浊介质中以透射模式进行AO。我们显示了均质水-脂质样品的原始信号和空间AO扫描。该方法潜在地能够在体内进行AO探测,因为采集时间(大约40 ns)比体内发现的散斑去相关的典型时间尺度小四个数量级。该方法最终可以使我们获得由同一激光器产生的注量补偿的光声信号

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