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首页> 外文期刊>Journal of biomedical optics >Moving-source elastic wave reconstruction for high-resolution optical coherence elastography
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Moving-source elastic wave reconstruction for high-resolution optical coherence elastography

机译:用于高分辨率光学相干弹性成像的运动源弹性波重建

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摘要

Optical coherence tomography (OCT)-based elasticity imaging can map soft tissue elasticity based on speckle-tracking of elastic wave propagation using highly sensitive phase measurements of OCT signals. Using a fixed elastic wave source and moving detection, current imaging sequences have difficulty in reconstructing tissue elasticity within speckle-free regions, for example, within the crystalline lens of the eye. We present a moving acoustic radiation force imaging sequence to reconstruct elastic properties within a speckle-free region by tracking elastic wave propagation from multiple laterally moving sources across the field of view. We demonstrate the proposed strategy using heterogeneous and partial speckle-free tissue-mimicking phantoms. Harder inclusions within the speckle-free region can be detected, and the contrast-to-noise ratio slightly enhanced compared to current OCE imaging sequences. The results suggest that a moving source approach may be appropriate for OCE studies within the large speckle-free regions of the crystalline lens.
机译:基于光学相干断层扫描(OCT)的弹性成像可以使用OCT信号的高灵敏度相位测量,基于弹性波传播的斑点跟踪来绘制软组织弹性。使用固定的弹性波源和移动检测,当前的成像序列难以重构无斑点区域内(例如,眼睛的晶状体内)的组织弹性。我们提出了一种移动声辐射力成像序列,以通过跟踪来自整个视场的多个横向移动源的弹性波传播来重建无斑点区域内的弹性特性。我们证明了使用异质和部分无斑点组织模仿体模的拟议策略。可以检测到无斑点区域内的较硬夹杂物,并且与当前的OCE成像序列相比,对比度噪声比略有提高。结果表明,移动源方法可能适合在晶状体的大无斑点区域内进行OCE研究。

著录项

  • 来源
    《Journal of biomedical optics》 |2016年第11期|116006.1-116006.5|共5页
  • 作者单位

    University of Washington, Department of Bioengineering, 3720 15th Avenue NE, P. O. Box 355013, Seattle, Washington 98105, United States,China Medical University, Department of Biomedical Imaging and Radiological Science, 91 Hsueh-Shih Road, Taichung 40402, Taiwan;

    University of Washington, Department of Bioengineering, 3720 15th Avenue NE, P. O. Box 355013, Seattle, Washington 98105, United States;

    University of Washington, Department of Bioengineering, 3720 15th Avenue NE, P. O. Box 355013, Seattle, Washington 98105, United States;

    University of Washington, Department of Bioengineering, 3720 15th Avenue NE, P. O. Box 355013, Seattle, Washington 98105, United States;

    University of Washington, Department of Bioengineering, 3720 15th Avenue NE, P. O. Box 355013, Seattle, Washington 98105, United States,University of Washington, Department of Ophthalmology, 325 9th Avenue, Seattle, Washington 98104, United States;

    University of Washington, Department of Bioengineering, 3720 15th Avenue NE, P. O. Box 355013, Seattle, Washington 98105, United States,University of Washington, Department of Ophthalmology, 325 9th Avenue, Seattle, Washington 98104, United States;

    University of Washington, Department of Bioengineering, 3720 15th Avenue NE, P. O. Box 355013, Seattle, Washington 98105, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    presbyopia; crystalline lens; elasticity imaging; acoustic radiation force; moving-source reconstruction; optical coherence elasticity imaging;

    机译:老花眼晶状体弹性成像声辐射力移动源重建;光学相干弹性成像;

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