角膜的弹性模量非均匀分布对其光学相干弹性成像的影响
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:国家自然科学基金项目(62165010),国家重点研发计划项目(2018YFE0115700)


The Effect of Non-Uniform Distributions of Corneal Elastic Modulus on Optical Coherence Elastography
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    摘要:

    目的 分析激励源位置、检测区域长度和检测深度对人眼角膜的剪切波光学相干弹性成像( optical coherenceelastography,OCE)的影响。 方法 结合人眼角膜的弹性模量的实际分布情况,构建角膜弹性模量非均匀分布的有限元模型。 通过模拟剪切波 OCE 实验,对比分析有限元模拟结果和理论结果。 结果 当激励源位置不同时,角膜前后基质的剪切波波速误差不同;当检测区域长度不同时,角膜前后基质的剪切波波速非线性变化;在超弹性材料模型下,当检测深度不同时,剪切波波速明显变化。 结论 由于角膜弹性模量非均匀分布,在角膜前后基质不同激励源位置、不同检测区域长度和不同检测深度的有限元模拟剪切波波速的结果不同。 将具有非均匀性的生物组织视作均质进行 OCE 实验会影响结果准确性。

    Abstract:

    Objective To analyze the effects of excitation source location, detection area length and detection depth on human corneal optical coherence elastography (OCE). Methods The finite element model of human eye with non-uniform distributions of corneal elastic modulus was constructed based on actual distributions of corneal elastic modulus. By simulating the process of shear wave OCE experiment, the finite element simulation results and theoretical results were compared and analyzed. Results When the excitation source locations were different, the shear wave velocity errors of the anterior and posterior corneal stroma were different. The shear wave velocities of the anterior and posterior corneal stroma changed nonlinearly when the detection area lengths were different. For the model with hyperelastic materials, the shear wave velocity changed obviously when the detection depths were different. Conclusions Due to the non-uniform distributions of corneal elastic modulus, the finite element simulation results of shear wave OCE are different at different excitation source locations, different detection area lengths and different detection depths in the anterior and posterior corneal stroma. In OCE experiments, the accuracy of OCE results will be affected if biological tissues with non-uniformity are regarded as homogeneity for measurement.

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金天子,陶兴明,方利华.角膜的弹性模量非均匀分布对其光学相干弹性成像的影响[J].医用生物力学,2023,38(4):697-702

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  • 收稿日期:2022-06-27
  • 最后修改日期:2022-08-06
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  • 在线发布日期: 2023-08-25
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