首页> 外文会议>Conference on Biomedical Thermoacoustics, Optoacoustics, and Acousto-Optics >Sub-millisecond in situ measurement of the photorefractive response in a self adaptive wavefront holography setup developed for acousto-optic imaging
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Sub-millisecond in situ measurement of the photorefractive response in a self adaptive wavefront holography setup developed for acousto-optic imaging

机译:用于声光成像的自适应波前全息设置中的光折响应的亚毫秒测量。用于声光成像

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Interferometric measurements for in-vivo imaging of biological tissues are strongly sensitive to the related speckle decorrelation time tc, whose effect is to reduce the contrast of the speckle pattern at the exit of the sample and thus blur detection. Though acousto-optic imaging is a well suited technique for the case of thick tissues, it has been shown that an acquisition rate in the 1-10kHz range is required for a good efficiency. We have previously built for this purpose an holographic setup that combines a fast but large area single photodetector and a photorefractive crystal, in order to measure a real-time acousto-optic signal by the so-called self-adaptive wavefront holography technique. In such a configuration, one critical point is the time response tPR of the photorefractive effect, which depends on the photorefractive configuration of the setup as well as the light intensity within the crystal. We have developed an original in situ method that determines this time in measuring the acousto-optic response through a combination of an amplitude modulation of the ultrasound and a frequency de-tuning of the reference beam. We can measure precisely this time but also monitor it according to a theoretical model that we have previously described. This offers the possibility to adapt the response of the setup to the decorrelation time of the medium under study, and also to have a measurement of τc.
机译:对生物组织的体内成像的干涉测量对相关斑点去相关时间Tc具有强烈敏感的,其效果是减小样品出口处的散斑图案的对比度,从而模糊检测。虽然声光成像是厚组织的情况下良好的技术,但已经表明,良好的效率需要1-10kHz范围内的采集速率。我们以前为此目的建立了全息设置,该全息设置结合了快速但大面积的单光探测器和光折射晶体,以便通过所谓的自适应波前全息技术来测量实时声光信号。在这样的配置中,一个临界点是光反射效果的时间响应TPR,这取决于设置的光反射结构以及晶体内的光强度。我们已经开发了原始方法,该方法通过组合超声波调制和参考光束的频率去调谐的组合来确定测量声光响应的时间。我们可以确定地测量这一次,还可以根据我们之前描述的理论模型监控。这提供了使得设置的响应来调整到所研究的媒体的去相关时间,并且还具有τc的测量。

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