使用集成显微镜的光谱域光学相干断层扫描设备通过手动器械跟踪进行术中人体视网膜成像。
Intrasurgical Human Retinal Imaging With Manual Instrument Tracking Using a Microscope-Integrated Spectral-Domain Optical Coherence Tomography Device.
作者信息
Hahn Paul, Carrasco-Zevallos Oscar, Cunefare David, Migacz Justin, Farsiu Sina, Izatt Joseph A, Toth Cynthia A
机构信息
Department of Ophthalmology, Duke University Medical Center, Durham, NC, USA.
Department of Biomedical Engineering, Duke University, Durham, NC, USA.
出版信息
Transl Vis Sci Technol. 2015 Jul 1;4(4):1. doi: 10.1167/tvst.4.4.1. eCollection 2015 Jul.
PURPOSE
To characterize the first in-human intraoperative imaging using a custom prototype spectral-domain microscope-integrated optical coherence tomography (MIOCT) device during vitreoretinal surgery with instruments in the eye.
METHODS
Under institutional review board approval for a prospective intraoperative study, MIOCT images were obtained at surgical pauses with instruments held static in the vitreous cavity and then concurrently with surgical maneuvers. Postoperatively, MIOCT images obtained at surgical pauses were compared with images obtained with a high-resolution handheld spectral-domain OCT (HHOCT) system with objective endpoints, including acquisition of images acceptable for analysis and identification of predefined macular morphologic or pathologic features.
RESULTS
Human MIOCT images were successfully obtained before incision and during pauses in surgical maneuvers. MIOCT imaging confirmed preoperative diagnoses, such as epiretinal membrane, full-thickness macular hole, and vitreomacular traction and demonstrated successful achievement of surgical goals. MIOCT and HHOCT images obtained at surgical pauses in two cohorts of five patients were comparable with greater than or equal to 80% correlation in 80% of patients. Real-time video-imaging concurrent with surgical manipulations enabled, for the first time using this device, visualization of dynamic instrument-retina interaction with targeted OCT tracking.
CONCLUSION
MIOCT is successful for imaging at surgical pauses and for real-time image guidance with implementation of targeted OCT tracking. Even faster acquisition speeds are currently being developed with incorporation of a swept-source MIOCT engine. Further refinements and investigations will be directed toward continued integration for real-time volumetric imaging of surgical maneuvers.
TRANSLATIONAL RELEVANCE
Ongoing development of seamless MIOCT systems will likely transform surgical visualization, approaches, and decision-making.
目的
利用定制原型光谱域显微镜集成光学相干断层扫描(MIOCT)设备,在眼内有器械的情况下,对玻璃体视网膜手术中的首次人体术中成像进行特征描述。
方法
在机构审查委员会批准的一项前瞻性术中研究中,在手术暂停时获取MIOCT图像,此时器械静止于玻璃体腔中,随后在进行手术操作时同步获取图像。术后,将手术暂停时获取的MIOCT图像与使用高分辨率手持式光谱域OCT(HHOCT)系统获取的图像进行比较,设定客观终点,包括获取可用于分析的图像以及识别预定义的黄斑形态学或病理学特征。
结果
在切口前以及手术操作暂停期间成功获取了人体MIOCT图像。MIOCT成像证实了术前诊断,如视网膜前膜、全层黄斑裂孔和玻璃体黄斑牵拉,并显示手术目标的成功实现。在两组各五名患者的手术暂停时获取的MIOCT和HHOCT图像具有可比性,80%的患者相关性大于或等于80%。首次使用该设备,在手术操作的同时进行实时视频成像,通过靶向OCT跟踪实现了动态器械与视网膜相互作用的可视化。
结论
MIOCT在手术暂停时成像以及通过实施靶向OCT跟踪进行实时图像引导方面取得了成功。目前正在研发结合扫频源MIOCT引擎以实现更快的采集速度。未来将进一步完善和研究,以持续整合用于手术操作的实时容积成像。
转化相关性
无缝MIOCT系统的不断发展可能会改变手术可视化、手术方法和决策制定。