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非均匀材料和生物组织中的四维(4D)相速度光学相干弹性成像

Four-dimensional (4D) phase velocity optical coherence elastography in heterogeneous materials and biological tissue.

作者信息

Liu Hsiao-Chuan, Kijanka Piotr, Urban Matthew W

机构信息

Department of Radiology, Mayo Clinic, 200 First St SW, Rochester, MN 55905, USA.

Department of Robotics and Mechatronics, AGH University of Science and Technology, Al. Mickiewicza 30, Krakow 30-059, Poland.

出版信息

Biomed Opt Express. 2020 Jun 18;11(7):3795-3817. doi: 10.1364/BOE.394835. eCollection 2020 Jul 1.

Abstract

The variations of mechanical properties in soft tissues are biomarkers used for clinical diagnosis and disease monitoring. Optical coherence elastography (OCE) has been extensively developed to investigate mechanical properties of various biological tissues. These methods are generally based on time-domain data and measure the time-of-flight of the localized shear wave propagations to estimate the group velocity. However, there is considerable information that can be obtained from examining the mechanical properties such as wave propagation velocities at different frequencies. Here we propose a method to evaluate phase velocity, wave velocity at various frequencies, in four-dimensional space (), called 4D-OCE phase velocity. The method enables local estimates of the phase velocity of propagating mechanical waves in a medium. We acquired and analyzed data with this method from a homogeneous reference phantom, a heterogeneous phantom material with four different excitation cases, and porcine kidney tissue. The 3D-OCE group velocity was also estimated to compare with 4D-OCE phase velocity. Moreover, we performed numerical simulation of wave propagations to illustrate the boundary behavior of the propagating waves. The proposed 4D-OCE phase velocity is capable of providing further information in OCE to better understand the spatial variation of mechanical properties of various biological tissues with respect to frequency.

摘要

软组织力学性能的变化是用于临床诊断和疾病监测的生物标志物。光学相干弹性成像(OCE)已得到广泛发展,用于研究各种生物组织的力学性能。这些方法通常基于时域数据,并测量局部剪切波传播的飞行时间以估计群速度。然而,通过检查力学性能,如不同频率下的波传播速度,可以获得大量信息。在此,我们提出一种在四维空间()中评估相速度(即不同频率下的波速)的方法,称为四维光学相干弹性成像相速度法。该方法能够对介质中传播的机械波的相速度进行局部估计。我们使用此方法从均匀参考体模、具有四种不同激发情况的非均匀体模材料以及猪肾组织中采集并分析了数据。还估计了三维光学相干弹性成像的群速度,以便与四维光学相干弹性成像相速度进行比较。此外,我们进行了波传播的数值模拟,以说明传播波的边界行为。所提出的四维光学相干弹性成像相速度能够在光学相干弹性成像中提供更多信息,以更好地理解各种生物组织力学性能随频率的空间变化。

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