光学相干层析成像
定量评估
医学
视网膜
光学
核医学
定量分析(化学)
材料科学
眼科
生物医学工程
光学成像
连贯性(哲学赌博策略)
眼病
视网膜
断层摄影术
图像处理
医学影像学
作者
Dongyue Wu,Max Mai Tobon,Florian Lux,Eleonora Tagliabue,Philipp Matten,Çağlar Ataman
摘要
Retinal endolaser photocoagulation (REPC) is a common vitreoretinal procedure, yet quantitative and intraoperative assessment of treatment outcomes remains challenging with microscopic imaging or conventional microscope-integrated optical coherence tomography (miOCT) systems. In this work, we evaluate a novel endolaser probe with instrument-integrated optical coherence tomography (iiOCT) for tissue monitoring in retinal endolaser photocoagulation (REPC) procedures. Retinal tissue changes in ex vivo porcine eyes were quantified from iiOCT M-scans (consecutive A-scans acquired over time), enabling both structural and phase-sensitive characterization of laser-induced responses. We also developed mixed-effect models incorporating iiOCT-derived metrics to predict reference dosimetry metrics from microscopic images and miOCT C-scans. The ordinal model reliably classified lesion visibility (accuracy = 0.884), outperforming a laser-parameters-only model. The linear model effectively predicted lesion size (average R 2 = 0.87), with the inclusion of the iiOCT-derived M-metric improving R 2 by approximately 8.3%. This proposed system bridges the gap between miOCT- and iiOCT-based dosimetry and establishes a foundation for real-time intraoperative feedback to improve the safety and efficacy of retinal endolaser surgery.
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