Neuhaus Kai, Khan Shanjida, Thaware Omkar, Ni Shuibin, Aga Mini, Jia Yali, Redd Travis, Chen Siyu, Huang David, Jian Yifan
Casey Eye Institute, Oregon Health & Science University , Portland, OR 97239, USA.
Department of Biomedical Engineering, Oregon Health & Science University, Portland, OR 97239, USA.
Biomed Opt Express. 2024 Jan 25;15(2):1059-1073. doi: 10.1364/BOE.511187. eCollection 2024 Feb 1.
A real-time line-field optical coherence tomography (LF-OCT) system is demonstrated with image acquisition rates of up to 5000 B-frames or 2.5 million A-lines per second for 500 A-lines per B-frame. The system uses a high-speed low-cost camera to achieve continuous data transfer rates required for real-time imaging, allowing the evaluation of future applications in clinical or intraoperative environments. The light source is an 840 nm super-luminescent diode. Leveraging parallel computing with GPU and high speed CoaXPress data transfer interface, we were able to acquire, process, and display OCT data with low latency. The studied system uses anamorphic beam shaping in the detector arm, optimizing the field of view and sensitivity for imaging biological tissue at cellular resolution. The lateral and axial resolution measured in air were 1.7 µm and 6.3 µm, respectively. Experimental results demonstrate real-time inspection of the trabecular meshwork and Schlemm's canal on corneoscleral wedges and real-time imaging of endothelial cells of human subjects .
展示了一种实时线场光学相干断层扫描(LF-OCT)系统,对于每B帧500条A线的情况,其图像采集速率高达每秒5000个B帧或250万条A线。该系统使用高速低成本相机来实现实时成像所需的连续数据传输速率,从而能够评估其在临床或术中环境中的未来应用。光源是一个840 nm的超发光二极管。利用GPU并行计算和高速CoaXPress数据传输接口,我们能够以低延迟采集、处理和显示OCT数据。所研究的系统在探测器臂中采用变形光束整形,以优化在细胞分辨率下对生物组织成像的视野和灵敏度。在空气中测量的横向和轴向分辨率分别为1.7 µm和6.3 µm。实验结果表明,该系统能够对角膜巩膜楔上的小梁网和施莱姆管进行实时检查,并对人体受试者的内皮细胞进行实时成像。