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Optical coherence tomography detection of shear wave propagation in layered tissue equivalent phantoms

机译:分层组织当量模组中剪力波传播的光学相干断层扫描检测

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In this work, we explored the potential of measuring shear wave propagation using Optical Coherence Elastography (OCE) in a layered phantom and 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, synchronized with an OCT swept source wavelength sweep imaging system. The acoustic radiation force was applied to layered phantoms. The phantoms were composed of gelatin and titanium dioxide. Differential OCT phase maps, measured with and without the acoustic radiation force, demonstrate microscopic displacement generated by shear wave propagation in these phantoms of different stiffness. The OCT phase maps are acquired with a swept-source OCT (SS-OCT) system. We present a technique for calculating tissue mechanical properties by propagating shear waves in inhomogeneous tissue equivalent phantoms using the Acoustic Radiation Force (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 studies of mechanical property measurements of heterogeneous tissue structures, with applications in the study of aneurysms and other intravascular pathologies.
机译:在这项工作中,我们探讨了使用层状模型中的光学相干弹性摄影(OCE)测量剪力波传播的可能性,并基于扫描源光学相干断层扫描(OCT)系统。使用压电换能器发送400μs的电压换能器产生剪切波,与OCT扫描源波长扫描成像系统同步。声辐射力被施加到分层的模糊。幽灵由明胶和二氧化钛组成。用声辐射力测量的差分10°映射,测量,展示在这些不同刚度的这些模糊中剪切波传播产生的微观位移。使用扫描源OCT(SS-OCT)系统获取OCT相位映射。我们介绍一种通过使用超声换能器的声学辐射力(ARF)传播不均匀组织当量模拟体中的剪切波来计算组织机械性能的技术,并测量与OCT相图的不同层中的剪切波速及其相关性能。该方法为未来研究非均相组织结构的生理性能测量研究的基础,在动脉瘤和其他血管内病变研究中的应用。

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