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眼科光学相干弹性成像。

Optical coherence elastography in ophthalmology.

机构信息

University of Washington, Department of Bioengineering, Seattle, Washington, United States.

Akademia Górniczo-Hutnicza University of Science and Technology, Krakow, Poland.

出版信息

J Biomed Opt. 2017 Dec;22(12):1-28. doi: 10.1117/1.JBO.22.12.121720.

Abstract

Optical coherence elastography (OCE) can provide clinically valuable information based on local measurements of tissue stiffness. Improved light sources and scanning methods in optical coherence tomography (OCT) have led to rapid growth in systems for high-resolution, quantitative elastography using imaged displacements and strains within soft tissue to infer local mechanical properties. We describe in some detail the physical processes underlying tissue mechanical response based on static and dynamic displacement methods. Namely, the assumptions commonly used to interpret displacement and strain measurements in terms of tissue elasticity for static OCE and propagating wave modes in dynamic OCE are discussed with the ultimate focus on OCT system design for ophthalmic applications. Practical OCT motion-tracking methods used to map tissue elasticity are also presented to fully describe technical developments in OCE, particularly noting those focused on the anterior segment of the eye. Clinical issues and future directions are discussed in the hope that OCE techniques will rapidly move forward to translational studies and clinical applications.

摘要

光学相干弹性成像(OCE)可以通过对组织硬度的局部测量提供有临床价值的信息。光学相干断层扫描(OCT)中改进的光源和扫描方法促使基于成像位移和软组织内应变的高分辨率、定量弹性成像系统快速发展,从而推断局部力学特性。我们基于静态和动态位移方法详细描述了组织力学响应的物理过程。即,讨论了常用的假设,以根据静态 OCE 中的位移和应变测量以及动态 OCE 中的传播波模式来解释组织弹性,并最终关注用于眼科应用的 OCT 系统设计。还介绍了用于映射组织弹性的实用 OCT 运动跟踪方法,以全面描述 OCE 的技术发展,特别是那些专注于眼前节的方法。讨论了临床问题和未来方向,希望 OCE 技术能够迅速推进转化研究和临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ad/5745712/5d265c86526d/JBO-022-121720-g001.jpg

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