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首页> 外文期刊>Graefe's archive for clinical and experimental ophthalmology: Albrecht von Graefes Archiv fur klinische und experimentelle Opthalmologie >Unprocessed real-time imaging of vitreoretinal surgical maneuvers using a microscope-integrated spectral-domain optical coherence tomography system
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Unprocessed real-time imaging of vitreoretinal surgical maneuvers using a microscope-integrated spectral-domain optical coherence tomography system

机译:使用显微镜集成的光谱域光学相干断层扫描系统对玻璃体视网膜手术进行未经处理的实时成像

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Background: We have recently developed a microscope-integrated spectral-domain optical coherence tomography (MIOCT) device towards intrasurgical cross-sectional imaging of surgical maneuvers. In this report, we explore the capability of MIOCT to acquire real-time video imaging of vitreoretinal surgical maneuvers without post-processing modifications. Methods: Standard 3-port vitrectomy was performed in human during scheduled surgery as well as in cadaveric porcine eyes. MIOCT imaging of human subjects was performed in healthy normal volunteers and intraoperatively at a normal pause immediately following surgical manipulations, under an Institutional Review Board-approved protocol, with informed consent from all subjects. Video MIOCT imaging of live surgical manipulations was performed in cadaveric porcine eyes by carefully aligning B-scans with instrument orientation and movement. Inverted imaging was performed by lengthening of the reference arm to a position beyond the choroid. Results: Unprocessed MIOCT imaging was successfully obtained in healthy human volunteers and in human patients undergoing surgery, with visualization of post-surgical changes in unprocessed single B-scans. Real-time, unprocessed MIOCT video imaging was successfully obtained in cadaveric porcine eyes during brushing of the retina with the Tano scraper, peeling of superficial retinal tissue with intraocular forceps, and separation of the posterior hyaloid face. Real-time inverted imaging enabled imaging without complex conjugate artifacts. Conclusions: MIOCT is capable of unprocessed imaging of the macula in human patients undergoing surgery and of unprocessed, real-time, video imaging of surgical maneuvers in model eyes. These capabilities represent an important step towards development of MIOCT for efficient, real-time imaging of manipulations during human surgery.
机译:背景:我们最近开发了一种集成了显微镜的光谱域光学相干断层扫描(MIOCT)设备,用于外科手术的术中横截面成像。在本报告中,我们探索了MIOCT无需进行后期处理修改即可获取玻璃体视网膜手术操作的实时视频影像的功能。方法:标准的三孔玻璃体切除术是在计划的手术过程中在人以及尸体猪眼中进行的。对人类受试者的MIOCT成像是在健康正常志愿者中进行的,并且在得到机构审查委员会批准的规程下,在所有受试者均知情同意的情况下,在外科手术后立即在正常暂停时进行术中正常暂停。在尸体猪眼中通过将B扫描与仪器的方向和运动仔细对准,对现场手术进行了视频MIOCT成像。通过将参考臂延长至脉络膜以外的位置来执行反转成像。结果:在健康的人类志愿者和接受手术的人类患者中成功获得了未经处理的MIOCT成像,并且可以对未经处理的单B扫描进行手术后变化的可视化。在使用Tano刮刀刷洗视网膜,用眼内镊子剥离浅表视网膜组织以及分离透明后玻璃体面部的过程中,成功地在尸体猪眼中获得了未经处理的实时MIOCT视频成像。实时倒置成像使成像无需复杂的共轭伪像。结论:MIOCT能够对接受手术的人类患者的黄斑进行未经处理的成像,并且能够对模型眼中的手术操作进行未经处理的实时视频成像。这些功能代表了开发MIOCT的重要一步,以在人体手术过程中对操作进行高效,实时的成像。

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