论文标题

有效且高精度3-D OCT血管造影运动校正病理学

Efficient and high accuracy 3-D OCT angiography motion correction in pathology

论文作者

Ploner, Stefan B., Kraus, Martin F., Moult, Eric M., Husvogt, Lennart, Schottenhamml, Julia, Alibhai, A. Yasin, Waheed, Nadia K., Duker, Jay S., Fujimoto, James G., Maier, Andreas K.

论文摘要

我们提出了一种新的方法,用于对正交栅格扫描的光学相干断层扫描血管造影仪的非刚性3-D运动校正。这是关节优化中主要是轴向结构特征(例如视网膜层和横向血管造影血管特征)的第一种方法。结合使用正交扫描和运动学上更合理的位移的使用,该方法允许在所有3个维度中的子像素对齐和微米尺度的失真校正。由于没有特定的结构或层被分割,因此方法是通过设计强大的病理变化。此外,它设计用于高度平行的实现和短暂的运行时,即使在高密度或宽场扫描中,也可以在临床常规中集成。我们根据204次对17名受试者的体积扫描(包括广泛的病理和健康对照组)进行了与临床相关特征相关的指标评估了与临床相关特征相关的指标。使用这种方法,我们实现了最新的轴向性能,并在横向共对准和失真校正方面都显示出显着的进步,尤其是在病理亚组中。

We propose a novel method for non-rigid 3-D motion correction of orthogonally raster-scanned optical coherence tomography angiography volumes. This is the first approach that aligns predominantly axial structural features like retinal layers and transverse angiographic vascular features in a joint optimization. Combined with the use of orthogonal scans and favorization of kinematically more plausible displacements, the approach allows subpixel alignment and micrometer-scale distortion correction in all 3 dimensions. As no specific structures or layers are segmented, the approach is by design robust to pathologic changes. It is furthermore designed for highly parallel implementation and brief runtime, allowing its integration in clinical routine even for high density or wide-field scans. We evaluated the algorithm with metrics related to clinically relevant features in a large-scale quantitative evaluation based on 204 volumetric scans of 17 subjects including both a wide range of pathologies and healthy controls. Using this method, we achieve state-of-the-art axial performance and show significant advances in both transverse co-alignment and distortion correction, especially in the pathologic subgroup.

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