Li Jianwei D, Raynor William, Dhalla Al-Hafeez, Viehland Christian, Trout Robert, Toth Cynthia A, Vajzovic Lejla M, Izatt Joseph A
Department of Biomedical Engineering, Duke University, 101 Science Drive, Durham, NC 27708, USA.
Department of Ophthalmology, Duke University Medical Center, 2351 Erwin Road, Durham, NC 27705, USA.
Biomed Opt Express. 2022 Dec 19;14(1):352-366. doi: 10.1364/BOE.483278. eCollection 2023 Jan 1.
Intraoperative optical coherence tomography (OCT) systems provide high-resolution, real-time visualization and/or guidance of microsurgical procedures. While the use of intraoperative OCT in ophthalmology has significantly improved qualitative visualization of surgical procedures inside the eye, new surgical techniques to deliver therapeutics have highlighted the lack of quantitative information available with current-generation intraoperative systems. Indirect viewing systems used for retinal surgeries introduce distortions into the resulting OCT images, making it particularly challenging to make calibrated quantitative measurements. Using an intraoperative OCT system based in part on the Leica Enfocus surgical microscope interface, we have devised novel measurement procedures, which allowed us to build optical and mathematical models to perform validation of quantitative measurements of intraocular structures for intraoperative OCT. These procedures optimize a complete optical model of the sample arm including the OCT scanner, viewing attachments, and the patient's eye, thus obtaining the voxel pitch throughout an OCT volume and performing quantitative measurements of the dimensions of imaged objects within the operative field. We performed initial validation by measuring objects of known size in a controlled eye phantom as well as porcine eyes. The technique was then extended to measure other objects and structures in porcine eyes and human eyes.
术中光学相干断层扫描(OCT)系统可提供高分辨率的实时可视化和/或显微外科手术指导。虽然术中OCT在眼科中的应用显著改善了眼内手术的定性可视化,但用于提供治疗的新手术技术凸显了当前一代术中系统缺乏定量信息的问题。用于视网膜手术的间接观察系统会给最终的OCT图像引入畸变,使得进行校准后的定量测量极具挑战性。我们使用了部分基于徕卡Enfocus手术显微镜接口的术中OCT系统,设计了新颖的测量程序,这使我们能够构建光学和数学模型,以对术中OCT的眼内结构定量测量进行验证。这些程序优化了样本臂的完整光学模型,包括OCT扫描仪、观察附件和患者的眼睛,从而在整个OCT容积中获得体素间距,并对手术视野内成像物体的尺寸进行定量测量。我们通过在可控的眼模型以及猪眼中测量已知大小的物体进行了初步验证。然后将该技术扩展到测量猪眼和人眼中的其他物体和结构。