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Acousto-optic imaging in diffuse media using pulsed ultrasound and the photorefractive effect.

机译:使用脉冲超声和光折变效应在扩散介质中进行声光成像。

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摘要

Acousto-optic imaging (AOI) in optically diffuse media is a hybrid imaging modality in which a focused ultrasound beam is used to locally phase modulate light inside of turbid media. The modulated optical field carries with it information about the optical properties in the region where the light and sound interact. The motivation for the development of AOI systems is to measure optical properties at large depths within biological tissue with high spatial resolution.; A photorefractive crystal (PRC) based interferometry system is developed for the detection of phase modulated light in AOI applications. Two-wave mixing in the PRC creates a reference beam that is wavefront matched to the modulated optical field collected from the specimen. The phase modulation is converted to an intensity modulation at the optical detector when these two fields interfere. The interferometer has a high optical etendue, making it well suited for AOI where the scattered light levels are typically low. A theoretical model for the detection of acoustically induced phase modulation in turbid media using PRC based interferometry is detailed.; An AOI system, using a single element focused ultrasound transducer to pump the AO interaction and the PRC based detection system, is fabricated and tested on tissue mimicking phantoms. It is found that the system has sufficient sensitivity to detect broadband AO signals generated using pulsed ultrasound, allowing for AOI at low time averaged ultrasound output levels. The spatial resolution of the AO imaging system is studied as a function of the ultrasound pulse parameters. A theoretical model of light propagation in turbid media is used to explore the dependence of the AO response on the experimental geometry, light collection aperture, and target optical properties.; Finally, a multimodal imaging system combining pulsed AOI and conventional B-mode ultrasound imaging is developed. B-mode ultrasound and AO images of targets embedded in both highly diffuse phantoms and biological tissue ex vivo are obtained, and millimeter resolution is demonstrated in three dimensions. The AO images are intrinsically co-registered with the B-mode ultrasound images. The results suggest that AOI can be used to supplement conventional B-mode ultrasound imaging with optical information.
机译:光学扩散介质中的声光成像(AOI)是一种混合成像方式,其中使用聚焦的超声波束对混浊介质内部的光进行局部相位调制。调制后的光场带有有关光和声相互作用的区域中的光学特性的信息。开发AOI系统的动机是以高空间分辨率测量生物组织内大深度的光学特性。开发了一种基于光折射晶体(PRC)的干涉仪系统,用于检测AOI应用中的调相光。在PRC中的两波混合会创建参考波,该参考波在波前与从样本收集的调制光场匹配。当这两个场发生干涉时,相位调制在光学检测器处转换为强度调制。干涉仪具有高光学扩展量,使其非常适合散射光水平通常较低的AOI。详细介绍了一种基于PRC的干涉测量技术检测混浊介质中声致相位调制的理论模型。制作了一个AOI系统,该系统使用单个元素聚焦超声换能器来泵浦AO相互作用和基于PRC的检测系统,并在模仿模型的组织上进行了测试。发现该系统具有足够的灵敏度以检测使用脉冲超声产生的宽带AO信号,从而允许在低时间获得AOI的平均超声输出水平。根据超声脉冲参数研究AO成像系统的空间分辨率。光在混浊介质中传播的理论模型用于探索AO响应对实验几何形状,光收集孔径和目标光学特性的依赖性。最终,开发了一种结合了脉冲AOI和常规B模式超声成像的多峰成像系统。获得了嵌入在高度弥散的体模和离体生物组织中的目标的B型超声和AO图像,并在三个维度上证明了毫米分辨率。 AO图像在本质上与B模式超声图像共配准。结果表明,AOI可用于通过光学信息补充常规B型超声成像。

著录项

  • 作者

    Sui, Lei.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Engineering Mechanical.; Physics Optics.; Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;光学;声学;
  • 关键词

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