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基于光场幅度动态变化的OCT功能成像原理和应用(特邀)

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光学相干层析成像(OCT)能够无损获得微米级空间分辨率的样品截面信息,在眼科、血管内科等临床诊疗研究和应用中起到了重要的作用。利用OCT测量光场的幅度可以获得样本的三维结构信息,如眼底视网膜的分层结构,但对组织特异性、血流、力学特性等功能信息的作用有限。基于相位、偏振态、波长等光场参量的OCT功能成像技术应运而生,如多普勒OCT、OCT弹性成像、偏振敏感OCT、可见光OCT等。其中,基于光场幅度动态变化的OCT功能成像技术具有显著的鲁棒性和系统复杂度优势,已经在临床无标记血管造影中获得成功。此外,应用于三维血流流速测量的动态光散射OCT、具有无标记组织/细胞特异性显示能力的动态OCT、能够监控热物理治疗温度场的OCT温度层析成像等,已经成为了OCT功能成像的技术前沿。综述基于光场幅度动态变化的OCT功能成像技术的原理、实现和应用,分析了所面临的技术挑战,并展望了未来发展方向。
Optical Coherence Tomography based on Dynamic Changes in Light Field Amplitude for Functional Imaging(Invited)
Optical coherence tomography(OCT)can nondestructively obtain the cross-sectional information of samples at micron-level spatial resolution,which is important for ophthalmology and endovascular medicine.The OCT amplitude provides three-dimensional(3D)structural information of a sample(for example,the layered structure of the retina)but is of limited use for obtaining functional information such as tissue specificity,blood flow,and mechanical properties.Functional OCT imaging techniques based on other optical field properties,including phase,polarization state,and wavelength,have also emerged.Among these techniques,Doppler OCT,optical coherence elastography,polarization-sensitive OCT,and visible-light OCT,based on dynamic changes in the light-field amplitude,are robust,uncomplicated,and have achieved high clinical success in label-free blood flow imaging.In addition,dynamic light scattering OCT for 3D blood flow velocity measurement,dynamic OCT with the ability to display label-free tissue/cell specificity,and OCT thermometry for monitoring the temperature field of thermophysical treatments are the frontiers in OCT functional imaging.This paper summarizes the principles and applications of the above technologies,analyzes the remaining technical challenges,and envisions the future development of OCT functional imaging.

optical coherence tomographyfunctional imagingdynamic change of light field amplitudedynamic light scattering

杨建龙、张浩然、刘畅、谷成富

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上海交通大学生物医学工程学院,上海 200240

光学相干层析成像 功能成像 光场幅度动态变化 动态光散射

国家自然科学基金

62105198

2024

激光与光电子学进展
中国科学院上海光学精密机械研究所

激光与光电子学进展

CSTPCD北大核心
影响因子:1.153
ISSN:1006-4125
年,卷(期):2024.61(2)
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