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Stereo Vision based Optic Nerve Head 3D Reconstruction using a Slit Lamp fitted with Cameras: Performance Trial with an Eye Phantom

机译:基于立体视觉基于视觉的视神经头3D重建,使用狭缝灯配有相机:具有眼睛幻影的性能试验

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摘要

Preventing vision loss from glaucoma, the second leading cause of blindness globally, relies on early detection and intervention. A key clinical indicator for early detection is structural change of the optic nerve head (ONH), which impacts the ONHs three-dimensional footprint on the retina. Clinically, such footprint is commonly assessed by subjective observation through a slit lamp, with significant inter- and intra-observer variability. Objective devices that rely on 3D imaging show promise in increasing diagnostic accuracy within clinics but are prohibitively expensive for many. In previous work, we demonstrated the initial feasibility of obtaining 3D surface images by applying stereo vision techniques to a slit lamp fitted with low-cost cameras. In this paper, we present the assessment of the precision and accuracy of our system with ONH targets in an eye phantom. Quantitative reconstructions, referenced to ground truth data, were obtained. Current results, albeit promising, suggest that more work is likely needed to improve accuracy and precision to a clinically significant level.
机译:预防青光眼的视力丧失,全球失明的第二个主要原因,依赖于早期检测和干预。早期检测的关键临床指标是视神经头部(ONH)的结构变化,这会影响视网膜上的ONHS三维足迹。在临床上,这种足迹通常通过通过狭缝灯的主观观察来评估,具有显着的观察者和观察者内的变异性。依赖于3D成像的客观设备显示在临床内的诊断准确性上增加,但对于许多人来说是非常昂贵的。在以前的工作中,我们通过将立体视觉技术应用于装有低成本摄像机的狭缝灯来证明获得3D表面图像的初始可行性。在本文中,我们展示了对眼睛幻影的ONH目标的系统精度和准确性评估。获得了地面真理数据的定量重建。目前的结果尽管有希望,建议可能需要更多的工作来提高准确性和精确度在临床上显着的水平。

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