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厚散射介质的时间分辨三维声光成象。

Time resolved three-dimensional acousto-optic imaging of thick scattering media.

机构信息

Institut Langevin, ESPCI ParisTech, CNRS UMR 7587, INSERM U979, 10 Rue Vauquelin, F-75231 Paris Cedex 05, France.

出版信息

Opt Lett. 2012 Jul 1;37(13):2754-6. doi: 10.1364/OL.37.002754.

Abstract

Acousto-optic imaging is based on light interaction with focused ultrasound in a scattering medium. Thanks to photorefractive holography combined with pulsed ultrasound, we perform a time-resolved detection of ultrasound-modulated photons in the therapeutic window (780 nm). A high-gain SPS:Te crystal is used for this purpose and enables us to image through large optical thickness (500 mean free paths). We are able to generate three-dimensional (3D) acousto-optic images by translating a multielement ultrasound probe in only one direction. A 3D absorbing object is imaged through a 3 cm thick phantom.

摘要

声光成像是基于光与聚焦超声在散射介质中的相互作用。通过结合光折变全息术和脉冲超声,我们在治疗窗口(780nm)中对超声调制光子进行了时间分辨检测。为此,我们使用了高增益 SPS:Te 晶体,使我们能够在大光学厚度(500 平均自由程)下进行成像。通过仅在一个方向上平移多元超声探头,我们能够生成三维(3D)声光图像。通过一个 3 厘米厚的模拟体对一个 3D 吸收物体进行成像。

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