Literature DB >> 28018709

Segmentation guided registration of wide field-of-view retinal optical coherence tomography volumes.

José Lezama1, Dibyendu Mukherjee2, Ryan P McNabb3, Guillermo Sapiro1, Anthony N Kuo3, Sina Farsiu4.   

Abstract

Patient motion artifacts are often visible in densely sampled or large wide field-of-view (FOV) retinal optical coherence tomography (OCT) volumes. A popular strategy for reducing motion artifacts is to capture two orthogonally oriented volumetric scans. However, due to larger volume sizes, longer acquisition times, and corresponding larger motion artifacts, the registration of wide FOV scans remains a challenging problem. In particular, gaps in data acquisition due to eye motion, such as saccades, can be significant and their modeling becomes critical for successful registration. In this article, we develop a complete computational pipeline for the automatic motion correction and accurate registration of wide FOV orthogonally scanned OCT images of the human retina. The proposed framework utilizes the retinal boundary segmentation as a guide for registration and requires only a minimal transformation of the acquired data to produce a successful registration. It includes saccade detection and correction, a custom version of the optical flow algorithm for dense lateral registration and a linear optimization approach for axial registration. Utilizing a wide FOV swept source OCT system, we acquired retinal volumes of 12 subjects and we provide qualitative and quantitative experimental results to validate the state-of-the-art effectiveness of the proposed technique. The source code corresponding to the proposed algorithm is available online.

Entities:  

Keywords:  (100.2980) Image enhancement; (170.4470) Ophthalmology; (170.4500) Optical coherence tomography

Year:  2016        PMID: 28018709      PMCID: PMC5175535          DOI: 10.1364/BOE.7.004827

Source DB:  PubMed          Journal:  Biomed Opt Express        ISSN: 2156-7085            Impact factor:   3.732


  30 in total

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4.  Optical coherence tomography.

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5.  Motion artefact correction in retinal optical coherence tomography using local symmetry.

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8.  Coherence revival multiplexed, buffered swept source optical coherence tomography: 400 kHz imaging with a 100 kHz source.

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2.  Spectrally encoded coherence tomography and reflectometry: Simultaneous en face and cross-sectional imaging at 2 gigapixels per second.

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5.  Higher-order regression three-dimensional motion-compensation method for real-time optical coherence tomography volumetric imaging of the cornea.

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6.  Characterization of Long Working Distance Optical Coherence Tomography for Imaging of Pediatric Retinal Pathology.

Authors:  Ruobing Qian; Oscar M Carrasco-Zevallos; Shwetha Mangalesh; Neeru Sarin; Lejla Vajzovic; Sina Farsiu; Joseph A Izatt; Cynthia A Toth
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  6 in total

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