光学相干层析成像
光学
弹性成像
断层摄影术
剪切(地质)
连贯性(哲学赌博策略)
材料科学
物理
超声波
声学
量子力学
复合材料
作者
Fernando Zvietcovich,Jannick P. Rolland,Jianing Yao,Panomsak Meemon,Kevin J. Parker
标识
DOI:10.1117/1.jbo.22.3.035010
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.
科研通智能强力驱动
Strongly Powered by AbleSci AI