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Probing Myocardium Biomechanics using Quantitative Optical Coherence Elastography

机译:使用定量光学相干弹性造影探测心肌生物力学

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We present a quantitative optical coherence elastographic method for noncontact assessment of the myocardium elasticity. The method is based on shear wave imaging optical coherence tomography (SWI-OCT), where a focused air-puff system is used to induce localized tissue deformation through a low-pressure short-duration air stream and a phase-sensitive OCT system is utilized to monitor the propagation of the induced tissue displacement with nano-scale sensitivity. The 1-D scanning of M-mode OCT imaging and the application of optical phase retrieval and mapping techniques enable the reconstruction and visualization of 2-D depth-resolved shear wave propagation in tissue with ultra-high frame rate. The feasibility of this method in quantitative elasticity measurement is demonstrated on tissue-mimicking phantoms with the estimated Young's modulus compared with uniaxial compression tests. We also performed pilot experiments on ex vivo mouse cardiac muscle tissues with normal and genetically altered cardiomyocytes. Our results indicate this noncontact quantitative optical coherence elastographic method can be a useful tool for the cardiac muscle research and studies.
机译:我们提出了一种定量光学相干弹性素,用于非接触的心肌弹性评估。该方法基于剪切波成像光学相干断层扫描(SWI-OCT),其中聚焦的空气浮气系统用于通过低压短持续时间空气流诱导局部组织变形,并且使用相敏感的OCT系统以纳米级敏感度监测诱导的组织位移的传播。 M-Mode OCT成像的1-D扫描和光学相位检索和映射技术的应用使得能够以超高帧速率在组织中重建和可视化。在与单轴压缩试验相比,在组织模拟的组织模拟中,对该方法进行了定量弹性测量的这种方法的可行性。我们还对前体内小鼠心肌组织进行了试点实验,具有正常和遗传改变的心肌细胞。我们的结果表明,这种非接触式定量光学相干弹性素法可以是心肌研究和研究的有用工具。

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