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Improved measurement of vibration amplitude in dynamic optical coherence elastography

机译:动态光学相干弹性成像中振动幅度的改进测量

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Abstract: Optical coherence elastography employs optical coherence tomography (OCT) to measure the displacement of tissues under load and, thus, maps the resulting strain into an image, known as an elastogram. We present a new improved method to measure vibration amplitude in dynamic optical coherence elastography. The tissue vibration amplitude caused by sinusoidal loading is measured from the spread of the Doppler spectrum, which is extracted using joint spectral and time domain signal processing. At low OCT signal-to-noise ratio (SNR), the method provides more accurate vibration amplitude measurements than the currently used phase-sensitive method. For measurements performed on a mirror at OCT SNR = 5 dB, our method introduces 3% error, compared to 20% using the phase-sensitive method. We present elastograms of a tissue-mimicking phantom and excised porcine tissue that demonstrate improvements, including a 50% increase in the depth range of reliable vibration amplitude measurement.
机译:摘要:光学相干弹性成像技术使用光学相干层析成像(OCT)来测量载荷下组织的位移,从而将产生的应变映射到图像中,称为弹性图。我们提出了一种新的改进的方法来测量动态光学相干弹性成像中的振动幅度。由多普勒频谱的扩展测量由正弦负载引起的组织振动幅度,该频谱使用联合频谱和时域信号处理来提取。在低OCT信噪比(SNR)的情况下,该方法比当前使用的相敏方法可提供更准确的振动幅度测量。对于在OCT SNR = 5 dB的反射镜上进行的测量,我们的方法引入了<3%的误差,而使用相敏方法则是> 20%。我们展示了模仿组织的幻象和切除的猪组织的弹性图,显示出改进,包括可靠振动幅度测量的深度范围增加了50%。

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