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Automated inter-device 3D OCT image registration using deep learning and retinal layer segmentation.

David Rivas-VillarAlice R MotschiMichael PircherChristoph K HitzenbergerMarkus SchranzPhilipp K RobertsUrsula Schmidt-ErfurthHrvoje Bogunovic
Published in: Biomedical optics express (2023)
Optical coherence tomography (OCT) is the most widely used imaging modality in ophthalmology. There are multiple variations of OCT imaging capable of producing complementary information. Thus, registering these complementary volumes is desirable in order to combine their information. In this work, we propose a novel automated pipeline to register OCT images produced by different devices. This pipeline is based on two steps: a multi-modal 2D en-face registration based on deep learning, and a Z-axis (axial axis) registration based on the retinal layer segmentation. We evaluate our method using data from a Heidelberg Spectralis and an experimental PS-OCT device. The empirical results demonstrated high-quality registrations, with mean errors of approximately 46 µm for the 2D registration and 9.59 µm for the Z-axis registration. These registrations may help in multiple clinical applications such as the validation of layer segmentations among others.
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