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Comparative study of shear wave-based elastography techniques in optical coherence tomography

机译:光学相干层析成像中基于剪切波的弹性成像技术的比较研究

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摘要

We compare five optical coherence elastography techniques able to estimate the shear speed of waves generated by one and two sources of excitation. The first two techniques make use of one piezoelectric actuator in order to produce a continuous shear wave propagation or a tone-burst propagation (TBP) of 400 Hz over a gelatin tissue-mimicking phantom. The remaining techniques utilize a second actuator located on the opposite side of the region of interest in order to create three types of interference patterns: crawling waves, swept crawling waves, and standing waves, depending on the selection of the frequency difference between the two actuators. We evaluated accuracy, contrast to noise ratio, resolution, and acquisition time for each technique during experiments. Numerical simulations were also performed in order to support the experimental findings. Results suggest that in the presence of strong internal reflections, single source methods are more accurate and less variable when compared to the two-actuator methods. In particular, TBP reports the best performance with an accuracy error <4.1 %. Finally, the TBP was tested in a fresh chicken tibialis anterior muscle with a localized thermally ablated lesion in order to evaluate its performance in biological tissue.%035010.1-035010.17
机译:我们比较了五种光学相干弹性成像技术,这些技术能够估算由一个和两个激发源产生的波的剪切速度。前两种技术使用一个压电致动器,以在明胶组织模拟体模上产生400 Hz的连续剪切波传播或音爆传播(TBP)。其余技术利用位于感兴趣区域相对侧的第二个执行器来创建三种类型的干涉图:爬行波,扫掠爬行波和驻波,具体取决于两个执行器之间的频率差选择。我们在实验过程中评估了每种技术的准确性,对比噪声比,分辨率和采集时间。为了支持实验结果,还进行了数值模拟。结果表明,在内部强反射的情况下,与双驱动器方法相比,单源方法更准确,变化更少。尤其是,TBP报告了最佳性能,其准确度误差<4.1%。最后,在具有局部热消融病变的新鲜鸡胫前肌中测试了TBP,以评估其在生物组织中的表现。%035010.1-035010.17

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