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自适应轮廓跟踪辅助对具有不均匀表面拓扑结构的大型物体进行宽视场扫频源光学相干断层扫描成像。

Adaptive contour-tracking to aid wide-field swept-source optical coherence tomography imaging of large objects with uneven surface topology.

作者信息

Liu Jian, Shi Yaping, Gong Zhaoyu, Zhang Yi, Wang Ruikang K

机构信息

Department of Bioengineering, University of Washington, Seattle, Washington 98105, USA.

Department of Ophthalmology, University of Washington, Seattle, Washington 98109, USA.

出版信息

Biomed Opt Express. 2024 Jul 29;15(8):4891-4908. doi: 10.1364/BOE.533399. eCollection 2024 Aug 1.

Abstract

High-speed and wide-field optical coherence tomography (OCT) imaging is increasingly essential for clinical applications yet faces challenges due to its inherent sensitivity roll-off and limited depth of focus, particularly when imaging samples with significant variations in surface contour. Here, we propose one innovative solution of adaptive contour tracking and scanning methods to address these challenges. The strategy integrates an electrically tunable lens and adjustable optical delay line control with real-time surface contour information, enabling dynamic optimization of imaging protocols. It rapidly pre-scans the sample surface to acquire a comprehensive contour map. Using this map, it generates a tailored scanning protocol by partitioning the entire system ranging distance into depth-resolved segments determined by the optical Raleigh length of the objective lens, ensuring optimal imaging at each segment. Employing short-range imaging mode along the sample contour minimizes data storage and post-processing requirements, while adaptive adjustment of focal length and reference optical delay line maintains high imaging quality throughout. Experimental demonstrations show the effectiveness of the adaptive contour tracking OCT in maintaining high contrast and signal-to-noise ratio across the entire field of view, even in samples with significantly uneven surface curvatures. Notably, this approach achieves these results with reduced data volume compared to traditional OCT methods. This advancement holds promise for enhancing OCT imaging in clinical settings, particularly in applications requiring rapid, wide-field imaging of tissue structures and blood flow.

摘要

高速宽视野光学相干断层扫描(OCT)成像在临床应用中变得越来越重要,但由于其固有的灵敏度下降和有限的焦深而面临挑战,特别是在对表面轮廓有显著变化的样本进行成像时。在此,我们提出一种自适应轮廓跟踪和扫描方法的创新解决方案来应对这些挑战。该策略将电可调透镜和可调光学延迟线控制与实时表面轮廓信息相结合,实现成像协议的动态优化。它快速预扫描样本表面以获取全面的轮廓图。利用此图,通过将整个系统的测距范围划分为由物镜的光学瑞利长度确定的深度分辨段来生成定制的扫描协议,确保在每个段都能实现最佳成像。沿样本轮廓采用短程成像模式可最大限度地减少数据存储和后处理需求,同时焦距和参考光学延迟线的自适应调整在整个过程中保持高成像质量。实验演示表明,自适应轮廓跟踪OCT即使在表面曲率明显不均匀的样本中,也能在整个视野内保持高对比度和信噪比。值得注意的是,与传统OCT方法相比,这种方法以减少的数据量实现了这些结果。这一进展有望在临床环境中增强OCT成像,特别是在需要对组织结构和血流进行快速、宽视野成像的应用中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a87/11427217/c02818082e89/boe-15-8-4891-g001.jpg

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