Literature DB >> 29229445

Optical coherence tomography angiography.

Richard F Spaide1, James G Fujimoto2, Nadia K Waheed3, Srinivas R Sadda4, Giovanni Staurenghi5.   

Abstract

Optical coherence tomography (OCT) was one of the biggest advances in ophthalmic imaging. Building on that platform, OCT angiography (OCTA) provides depth resolved images of blood flow in the retina and choroid with levels of detail far exceeding that obtained with older forms of imaging. This new modality is challenging because of the need for new equipment and processing techniques, current limitations of imaging capability, and rapid advancements in both imaging and in our understanding of the imaging and applicable pathophysiology of the retina and choroid. These factors lead to a steep learning curve, even for those with a working understanding dye-based ocular angiography. All for a method of imaging that is a little more than 10 years old. This review begins with a historical account of the development of OCTA, and the methods used in OCTA, including signal processing, image generation, and display techniques. This forms the basis to understand what OCTA images show as well as how image artifacts arise. The anatomy and imaging of specific vascular layers of the eye are reviewed. The integration of OCTA in multimodal imaging in the evaluation of retinal vascular occlusive diseases, diabetic retinopathy, uveitis, inherited diseases, age-related macular degeneration, and disorders of the optic nerve is presented. OCTA is an exciting, disruptive technology. Its use is rapidly expanding in clinical practice as well as for research into the pathophysiology of diseases of the posterior pole.
Copyright © 2018 The Authors. Published by Elsevier Ltd.. All rights reserved.

Entities:  

Keywords:  Multimodal imaging; Optical coherence tomography; Optical coherence tomography angiography

Mesh:

Year:  2017        PMID: 29229445      PMCID: PMC6404988          DOI: 10.1016/j.preteyeres.2017.11.003

Source DB:  PubMed          Journal:  Prog Retin Eye Res        ISSN: 1350-9462            Impact factor:   21.198


  342 in total

1.  Assessing the long-term evolution of type 3 neovascularization in age-related macular degeneration using optical coherence tomography angiography.

Authors:  Han Joo Cho; Soo Hyun Lim; Jaemin Kim; Jihyun Lee; Dong Won Lee; Jong Woo Kim
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2021-03-21       Impact factor: 3.117

2.  Ultra-Widefield Protocol Enhances Automated Classification of Diabetic Retinopathy Severity with OCT Angiography.

Authors:  FuPeng Wang; Steven S Saraf; Qinqin Zhang; Ruikang K Wang; Kasra A Rezaei
Journal:  Ophthalmol Retina       Date:  2019-11-09

3.  Commentary on Lavia et al: Progress of Optical Coherence Tomography Angiography for Visualizing Human Retinal Vasculature.

Authors:  Christine A Curcio; Deepayan Kar
Journal:  Retina       Date:  2019-02       Impact factor: 4.256

4.  High dynamic range optical coherence tomography angiography (HDR-OCTA).

Authors:  Xiang Wei; Tristan T Hormel; Shaohua Pi; Yukun Guo; Yifan Jian; Yali Jia
Journal:  Biomed Opt Express       Date:  2019-06-24       Impact factor: 3.732

5.  Development and validation of a deep learning algorithm for distinguishing the nonperfusion area from signal reduction artifacts on OCT angiography.

Authors:  Yukun Guo; Tristan T Hormel; Honglian Xiong; Bingjie Wang; Acner Camino; Jie Wang; David Huang; Thomas S Hwang; Yali Jia
Journal:  Biomed Opt Express       Date:  2019-06-12       Impact factor: 3.732

6.  Maximum value projection produces better en face OCT angiograms than mean value projection.

Authors:  Tristan T Hormel; Jie Wang; Steven T Bailey; Thomas S Hwang; David Huang; Yali Jia
Journal:  Biomed Opt Express       Date:  2018-11-26       Impact factor: 3.732

7.  Current Management of Age-Related Macular Degeneration.

Authors:  Cindy Ung; Ines Lains; Joan W Miller; Ivana K Kim
Journal:  Adv Exp Med Biol       Date:  2021       Impact factor: 2.622

8.  Macular microvasculature features before and after vitrectomy in idiopathic macular epiretinal membrane: an OCT angiography analysis.

Authors:  Hui Chen; Wei Chi; Xiaojuan Cai; Yang Deng; Xintong Jiang; Yantao Wei; Shaochong Zhang
Journal:  Eye (Lond)       Date:  2018-11-22       Impact factor: 3.775

9.  Retinal Vascular Reactivity as Assessed by Optical Coherence Tomography Angiography.

Authors:  Sam Kushner-Lenhoff; Bright S Ashimatey; Amir H Kashani
Journal:  J Vis Exp       Date:  2020-03-26       Impact factor: 1.355

10.  Vascular Density of Deep, Intermediate and Superficial Vascular Plexuses Are Differentially Affected by Diabetic Retinopathy Severity.

Authors:  Mohamed Ashraf; Konstantina Sampani; Allen Clermont; Omar Abu-Qamar; Jae Rhee; Paolo S Silva; Lloyd Paul Aiello; Jennifer K Sun
Journal:  Invest Ophthalmol Vis Sci       Date:  2020-08-03       Impact factor: 4.799

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