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Quantitative assessment of the mechanical properties of tissue-mimicking agar phantoms by optical coherence elastography and numerical analyses

机译:光学相干弹性成像和数值分析定量评估模拟组织琼脂模型的机械性能

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摘要

A systematic investigation was conducted on the accuracies of four analytical methods for obtaining the elasticity of soft samples by using optical coherence elastography (OCE). The results were compared to the elasticity measured by uniaxial mechanical testing. OCE has emerged as a noninvasive method for quantifying tissue biomechanical properties with spatial resolution of a few micrometers. A proper mechanical model is required for extracting the biomechanical parameters accurately from OCE measurements. In this work, tissue-mimicking agar phantoms were utilized to analyze the accuracy and feasibility of four methods for reconstructing the Young's modulus from OCE-measured elastic wave which were induced by a focused air-pulse. These reconstruction methods are: the shear wave equation (SWE), the surface wave equation (SuWE), the Rayleigh-Lamb frequency equation (RLFE), and the finite element method (FEM). The reconstructed elasticity values were also compared with uniaxial mechanical testing results. It was shown that the RLFE and the FEM are more robust in quantifying elasticity than the other simplified models. This work may provide a reference for reconstructing the biomechanical properties of tissues based on OCE measurements. Accurate reconstruction of biomechanical properties is an important issue for further developing noninvasive elastography methods.
机译:对使用光学相干弹性成像(OCE)获得软样品弹性的四种分析方法的准确性进行了系统的研究。将结果与通过单轴机械测试测得的弹性进行比较。 OCE已经成为一种非侵入性方法,用于以几微米的空间分辨率量化组织生物力学特性。需要适当的机械模型才能从OCE测量中准确提取生物力学参数。在这项工作中,利用模仿组织的琼脂模型来分析四种由聚焦空气脉冲引起的OCE测量的弹性波重建杨氏模量的方法的准确性和可行性。这些重建方法是:剪切波方程(SWE),表面波方程(SuWE),瑞利-兰姆频率方程(RLFE)和有限元方法(FEM)。还将重建的弹性值与单轴力学测试结果进行了比较。结果表明,RLFE和FEM在量化弹性方面比其他简化模型更强大。这项工作可为基于OCE测量重建组织的生物力学特性提供参考。生物力学性能的准确重建是进一步开发无创弹性成像方法的重要问题。

著录项

  • 来源
    《Optical Elastography and Tissue Biomechanics II》|2015年|932710.1-932710.9|共9页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA,Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, TX 77030, USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA;

    Department of Biomedical Engineering, University of Texas at Austin, 107 W Dean Keeton Street, Austin, TX 78712, USA;

    School of Optometry, University of Alabama, Birmingham, AL 35294 USA;

    Department of Biomedical Engineering, Cullen College of Engineering, University of Houston, Houston, TX 77204, USA,Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, TX 77030, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Optical coherence elastography (OCE); phase velocity; elastic wave; Rayleigh-Lamb frequency equation; finite element method; tissue-mimicking phantom;

    机译:光学相干弹性成像(OCE);相速度弹性波瑞利-兰姆频率方程;有限元法组织模仿体模;
  • 入库时间 2022-08-26 13:44:41

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