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A comparison study of optical coherence elastography and laser Michelson vibrometry

机译:光学相干弹性术与激光迈克森振动测定的比较研究

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Quantitative elastography is a power technique to detect and analyze the changes in biomedical properties of tissues in normal and pathological states, In this study, two noncontact elastography techniques, laser Michelson vibrometry (LMV) and optical coherence elastography (OCE), were utilized to quantify the Young's modulus of tissue-mimicking agar phantoms of various concentrations. Low-amplitude (micrometer scale) elastic waves were induced by a focused air-pulse delivery system and imaged by the respective systems. The Young's modulus as assessed by both elastographic techniques was similar and was compared to the stiffness as measured by uniaxial mechanical testing. The results show that both techniques accurately quantified the elasticity. OCE can provide absolute elastic wave temporal profile, depth-resolved measurement and superior displacement sensitivity compared to LMV, but LMV is significantly cheaper (10X) and easier to implement than OCE.
机译:定量弹性造影是一种能够检测和分析正常和病理状态中组织生物医学性质的变化的动力技术,在本研究中,两个非接触式弹性术技术,激光迈克尔逊振动器(LMV)和光学相干弹性术(OCE)被用来量化杨氏模量的各种浓度的组织模拟琼脂模量。由聚焦的空气脉冲输送系统诱导低幅度(微米级)弹性波并由各个系统成像。通过弹性图技术评估的杨氏模量类似,与通过单轴机械测试测量的刚度进行比较。结果表明,两种技术都准确地量化了弹性。与LMV相比,OCE可以提供绝对弹性波时间轮廓,深度分辨的测量和卓越的位移灵敏度,但LMV明显更便宜(10倍),而且比OCE更容易实现。

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