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A comparative study of shear wave speed estimation techniques in optical coherence elastography applications

机译:光学相干弹性造影应用中剪切波速估计技术的对比研究

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Optical Coherence Elastography (OCE) is a widely investigated noninvasive technique for estimating the mechanical properties of tissue. In particular, vibrational OCE methods aim to estimate the shear wave velocity generated by an external stimulus in order to calculate the elastic modulus of tissue. In this study, we compare the performance of five acquisition and processing techniques for estimating the shear wave speed in simulations and experiments using tissue-mimicking phantoms. Accuracy, contrast-to-noise ratio, and resolution are measured for all cases. The first two techniques make the use of one piezoelectric actuator for generating a continuous shear wave propagation (SWP) and a tone-burst propagation (TBP) of 400 Hz over the gelatin phantom. The other techniques make use of one additional actuator locatec on the opposite side of the region of interest in order to create an interference pattern. When both actuators have the same frequency, a standing wave (SW) pattern is generated. Otherwise, when there is a frequency differencedf between both actuators, a crawling wave (CrW) pattern is generated and propagates with less speed than a shear wave, which makes in suitable for being detected by the 2D cross-sectional OCE imaging. Ifdf is not small compared to the operational frequency, the CrW travels faster and a sampled version of it (SCrW) is acquired by the system. Preliminary results suggest that TBF (error < 4.1 %) and SWP (error < 6%) techniques are more accurate when compared to mechanical measurement test results.
机译:光学相干弹性成像(OCE)是用于估计组织的机械性质的广泛研究的无创技术。特别地,振动OCE方法旨在以估计以计算组织的弹性模量通过外部刺激产生的切变波速度。在这项研究中,我们比较五个采集和处理技术用于估计在模拟和使用仿组织幻影实验剪切波传播速度的性能。精度,对比度噪声比,和分辨率对于所有的情况进行测定。前两种技术使得使用一个压电致动器的用于在明胶幻象生成400Hz的连续剪切波传播(SWP)及音调突发传播(TBP)。其它技术使以创建的干涉图案上使用的感兴趣区域的相对侧上的一个附加致动器的locatec。当两个致动器具有相同的频率时,产生驻波(SW)图案。否则,当有两个致动器之间的频率differencedf,生成并具有比横波,这使得在适合于由2D横截面OCE成像被检测速度传播少一个爬行波(CRW)图案。 Ifdf不小相比工作频率,所述CRW行进更快,它的一个采样版本(SCRW)由系统获取。初步结果表明,TBF(误差<4.1%)和SWP相比机械测量的测试结果时(误差<6%)的技术更准确。

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