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Quantitative methods for reconstructing tissue biomechanical properties in optical coherence elastography: a comparison study

机译:光学相干弹性成像中重建组织生物力学特性的定量方法:比较研究

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摘要

We present a systematic analysis of the accuracy of five different methods for extracting the biomechanical properties of soft samples using optical coherence elastography (OCE). OCE is an emerging noninvasive technique, which allows assessing biomechanical properties of tissues with a micrometer spatial resolution. However, in order to accurately extract biomechanical properties from OCE measurements, application of proper mechanical model is required. In this study, we utilize tissue-mimicking phantoms with controlled elastic properties and investigate the feasibilities of four available methods for reconstructing elasticity (Young’s modulus) based on OCE measurements of an air-pulse induced elastic wave. The approaches are based on the shear wave equation (SWE), the surface wave equation (SuWE), Rayleigh-Lamb frequency equation (RLFE), and finite element method (FEM), Elasticity values were compared with uniaxial mechanical testing. The results show that the RLFE and the FEM are more robust in quantitatively assessing elasticity than the other simplified models. This study provides a foundation and reference for reconstructing the biomechanical properties of tissues from OCE data, which is important for the further development of noninvasive elastography methods.
机译:我们提供了使用光学相干弹性成像(OCE)提取软样品的生物力学特性的五种不同方法的准确性的系统分析。 OCE是一种新兴的非侵入性技术,可以用微米级的空间分辨率评估组织的生物力学特性。但是,为了从OCE测量中准确提取生物力学特性,需要使用适当的机械模型。在这项研究中,我们利用具有可控弹性特性的模仿组织模型,并研究了基于空气脉冲诱发弹性波的OCE测量来重建弹性(杨氏模量)的四种可用方法的可行性。这些方法基于剪切波方程(SWE),表面波方程(SuWE),瑞利-兰姆频率方程(RLFE)和有限元方法(FEM),将弹性值与单轴力学测试进行了比较。结果表明,RLFE和FEM在定量评估弹性方面比其他简化模型更强大。这项研究为从OCE数据重建组织的生物力学特性提供了基础和参考,这对于进一步发展无创弹性成像方法很重要。

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