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Optical coherence tomography detection of shear wave propagation in inhomogeneous tissue equivalent phantoms and ex-vivo carotid artery samples

机译:光学相干层析成像技术在不均匀组织等效体模和离体颈动脉样本中剪切波传播的检测

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摘要

In this work, we explored the potential of measuring shear wave propagation using optical coherence elastography (OCE) in an inhomogeneous phantom and carotid artery samples based on a swept-source optical coherence tomography (OCT) system. Shear waves were generated using a piezoelectric transducer transmitting sine-wave bursts of 400 μs duration, applying acoustic radiation force (ARF) to inhomogeneous phantoms and carotid artery samples, synchronized with a swept-source OCT (SS-OCT) imaging system. The phantoms were composed of gelatin and titanium dioxide whereas the carotid artery samples were embedded in gel. Differential OCT phase maps, measured with and without the ARF, detected the microscopic displacement generated by shear wave propagation in these phantoms and samples of different stiffness. We present the technique for calculating tissue mechanical properties by propagating shear waves in inhomogeneous tissue equivalent phantoms and carotid artery samples using the ARF of an ultrasound transducer, and measuring the shear wave speed and its associated properties in the different layers with OCT phase maps. This method lays the foundation for future in-vitro and in-vivo studies of mechanical property measurements of biological tissues such as vascular tissues, where normal and pathological structures may exhibit significant contrast in the shear modulus.
机译:在这项工作中,我们探索了使用扫频光学相干断层扫描(OCT)系统在不均匀的体模和颈动脉样本中使用光学相干弹性成像(OCE)测量剪切波传播的潜力。剪切波是使用压电换能器产生的,该换能器传输持续时间为400μs的正弦波突发,并将声辐射力(ARF)应用于不均匀的体模和颈动脉样本,并与扫频OCT(SS-OCT)成像系统同步。体模由明胶和二氧化钛组成,而颈动脉样品则被包埋在凝胶中。使用ARF和不使用ARF进行测量的差分OCT相图,可以检测到在这些体模和不同刚度的样本中,剪切波传播所产生的微观位移。我们介绍了一种通过使用超声换能器的ARF在非均质组织等效体模和颈动脉样本中传播剪切波并通过OCT相图在不同层中测量剪切波速度及其相关属性来计算组织力学性能的技术。该方法为将来的体外和体内研究生物组织(如血管组织)的机械性能测量奠定了基础,其中正常和病理结构在剪切模量上可能表现出明显的对比。

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