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Motion correction is an important issue in ophthalmic optical coherence tomography (OCT). We present a novel method combining normalized cross‐correlation, polynomial fitting and shortest path faster algorithm to correct cross‐sectional motion artifacts in retinal volumes. The results demonstrate that our method effectively corrects motion artifacts in OCT volumes and may have potential application...
Motion correction is an important issue in ophthalmic optical coherence tomography (OCT), and can improve the ability of data sets to reflect the physiological structures of tissues and make visualization and subsequent analysis easier. In this study, we present a novel method to correct the cross‐sectional motion artifacts in retinal OCT volumes. Motion along the x‐direction (fast‐scan direction)...
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