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Feasibility of optical coherence elastography measurements of shear wave propagation in homogeneous tissue equivalent phantoms

机译:光学相干弹性成像技术测量均质组织等效体模中剪切波传播的可行性

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摘要

In this work, we explored the potential of measuring shear wave propagation using optical coherence elastography (OCE) based on a swept-source optical coherence tomography (OCT) system. Shear waves were generated using a 20 MHz piezoelectric transducer (circular element 8.5 mm diameter) transmitting sine-wave bursts of 400 μs, synchronized with the OCT swept source wavelength sweep. The acoustic radiation force (ARF) was applied to two gelatin phantoms (differing in gelatin concentration by weight, 8% vs. 14%). Differential OCT phase maps, measured with and without the ARF, demonstrate microscopic displacement generated by shear wave propagation in these phantoms of different stiffness. We present preliminary results of OCT derived shear wave propagation velocity and modulus, and compare these results to rheometer measurements. The results demonstrate the feasibility of shear wave OCE (SW-OCE) for high-resolution microscopic homogeneous tissue mechanical property characterization.
机译:在这项工作中,我们探索了使用基于扫频光学相干断层扫描(OCT)系统的光学相干弹性成像(OCE)测量剪切波传播的潜力。使用20 MHz压电换能器(直径为8.5 mm的圆形元件)产生剪切波,该波传输与OCT扫频光源波长扫描同步的400μs正弦波突发。将声辐射力(ARF)应用于两个明胶体模(明胶浓度的重量差异为8%对14%)。在使用ARF和不使用ARF的情况下,差分OCT相图均显示了由剪切波传播在这些刚度不同的模型中产生的微观位移。我们介绍了OCT得出的剪切波传播速度和模量的初步结果,并将这些结果与流变仪的测量结果进行了比较。结果证明了剪切波OCE(SW-OCE)用于高分辨率微观均质组织力学特性表征的可行性。

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