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使用动态光学相干弹性成像技术表征纳米级组织振荡的固有频率

Characterization of natural frequencies from nanoscale tissue oscillations using dynamic optical coherence elastography.

作者信息

Lan Gongpu, Larin Kirill V, Aglyamov Salavat, Twa Michael D

机构信息

Foshan University, School of Physics and Optoelectronic Engineering, Foshan, Guangdong, 528000, China.

University of Alabama at Birmingham, School of Optometry, Birmingham, AL 35290, USA.

出版信息

Biomed Opt Express. 2020 May 26;11(6):3301-3318. doi: 10.1364/BOE.391324. eCollection 2020 Jun 1.

Abstract

We demonstrate the use of OCT-based elastography for soft-tissue characterization using natural frequency oscillations. Sub-micrometer to sub-nanometer oscillations were induced in tissue phantoms and human cornea by perpendicular air-pulse stimulation and observed by common-path OCT imaging (sensitivity: 0.24 nm). Natural frequency and damping ratio were acquired in temporal and frequency domains using a single degree of freedom method. The dominant natural frequency was constant for different stimulation pressures (4-32 Pa) and measured distances (0.3-5.3 mm), and decreased as the sample thickness increased. The dominant natural frequencies of 0.75-2% agar phantoms were 127-774 Hz (mean coefficient of variation [CV]: 0.9%), and correlated with the square root of Young's moduli (16.5-117.8 kPa, mean CV: 5.8%). These preliminary studies show repeatable corneal natural frequency measurements (259 Hz, CV: 1.9%). This novel OCE approach can distinguish tissues and materials with different mechanical properties using the small-amplitude tissue oscillation features, and is suitable for characterizing delicate tissues such as the eye.

摘要

我们展示了基于光学相干断层扫描(OCT)的弹性成像技术在利用自然频率振荡对软组织进行特征描述方面的应用。通过垂直空气脉冲刺激在组织模型和人角膜中诱导出亚微米至亚纳米级的振荡,并通过共光路OCT成像(灵敏度:0.24纳米)进行观察。使用单自由度方法在时域和频域中获取自然频率和阻尼比。对于不同的刺激压力(4 - 32帕斯卡)和测量距离(0.3 - 5.3毫米),主导自然频率保持恒定,并且随着样品厚度的增加而降低。0.75 - 2%琼脂模型的主导自然频率为127 - 774赫兹(平均变异系数[CV]:0.9%),并且与杨氏模量的平方根(16.5 - 117.8千帕斯卡,平均CV:5.8%)相关。这些初步研究显示了可重复的角膜自然频率测量结果(259赫兹,CV:1.9%)。这种新颖的光学相干弹性成像(OCE)方法可以利用小幅度组织振荡特征区分具有不同力学性能的组织和材料,并且适用于对诸如眼睛等 delicate 组织进行特征描述。 (注:原文中“delicate”未准确翻译,可根据语境灵活调整,比如“精细的”等)

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