Literature DB >> 26823394

Characteristics and quantification of vascular changes in macular telangiectasia type 2 on optical coherence tomography angiography.

Lavanya Chidambara1, Santosh G K Gadde1, Naresh Kumar Yadav1, Chaitra Jayadev1, Devanshi Bhanushali1, Abhishek M Appaji2, Mukunda Akkali1, Aruj Khurana1, Rohit Shetty1.   

Abstract

BACKGROUND: Macular telangiectasia type 2 (MacTel 2) is a bilateral idiopathic, rare neurodegenerative disease with alterations in the macular capillary network leading to vision loss and is the most common of three subtypes. Optical coherence tomography angiography (OCTA) is a non-invasive imaging modality which helps understand the complex pathological changes, and images the blood vessels across different layers based on their flow characteristics.
METHODS: A cross-sectional study was conducted on 56 eyes of Asian Indian eyes of 28 consecutive patients with MacTel 2 studied during a 3-month period in a tertiary eye care hospital of South India. Clinically diagnosed cases of MacTel 2 underwent fundus photography, spectral domain OCT and OCTA. Fluorescein angiography was performed only when clinically indicated. Mean capillary density was calculated using a MATLAB-based automated software. The images were thresholded and binarised to derive the mean value.
RESULTS: The mean age at presentation was 60±5.2, with a female preponderance of 71.42%. Vascular network on OCTA shows an increase in the intervascular spaces with progressive capillary rarefaction and abnormal capillary anastomosis. The outer retina and choroid were involved during the later stages and showed a prominent vascular network. The mean capillary density of the superficial and deep layers was 39.99% and 39.03% as against 45.18% and 44.21% in the controls, respectively. There was a statistically significant difference between the two groups (p<0.01). There is a positive and statistically significant correlation between the superficial and deep layers.
CONCLUSION: OCTA helps understand the pathology and disease progression better in MacTel 2. Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://www.bmj.com/company/products-services/rights-and-licensing/.

Entities:  

Keywords:  Imaging; Macula; Retina

Mesh:

Year:  2016        PMID: 26823394     DOI: 10.1136/bjophthalmol-2015-307941

Source DB:  PubMed          Journal:  Br J Ophthalmol        ISSN: 0007-1161            Impact factor:   4.638


  27 in total

1.  Reduced vascular perfusion density in idiopathic epiretinal membrane compared to macular pseudohole.

Authors:  Luisa Pierro; Lorenzo Iuliano; Alessandro Marchese; Alessandro Arrigo; Alessandro Rabiolo; Francesco Bandello
Journal:  Int Ophthalmol       Date:  2019-05-27       Impact factor: 2.031

2.  Evaluation of artifact reduction in optical coherence tomography angiography with real-time tracking and motion correction technology.

Authors:  Acner Camino; Miao Zhang; Simon S Gao; Thomas S Hwang; Utkarsh Sharma; David J Wilson; David Huang; Yali Jia
Journal:  Biomed Opt Express       Date:  2016-09-06       Impact factor: 3.732

3.  Hypoxia tolerance in the Norrin-deficient retina and the chronically hypoxic brain studied at single-cell resolution.

Authors:  Jacob S Heng; Amir Rattner; Genevieve L Stein-O'Brien; Briana L Winer; Bryan W Jones; Hilary J Vernon; Loyal A Goff; Jeremy Nathans
Journal:  Proc Natl Acad Sci U S A       Date:  2019-04-15       Impact factor: 11.205

4.  Multimodal retinal imaging in central serous chorioretinopathy treated with oral eplerenone or photodynamic therapy.

Authors:  A Rabiolo; I Zucchiatti; A Marchese; G Baldin; R Sacconi; D Montorio; M V Cicinelli; L Querques; F Bandello; G Querques
Journal:  Eye (Lond)       Date:  2017-12-21       Impact factor: 3.775

5.  Retinal vascular density evaluated by optical coherence tomography angiography in macular telangiectasia type 2.

Authors:  Berna Dogan; Muhammet Kazim Erol; Melih Akidan; Elcin Suren; Yusuf Akar
Journal:  Int Ophthalmol       Date:  2019-01-03       Impact factor: 2.031

6.  REPRODUCIBILITY OF VESSEL DENSITY MEASUREMENT WITH OPTICAL COHERENCE TOMOGRAPHY ANGIOGRAPHY IN EYES WITH AND WITHOUT RETINOPATHY.

Authors:  Qisheng You; William R Freeman; Robert N Weinreb; Linda Zangwill; Patricia I C Manalastas; Luke J Saunders; Eric Nudleman
Journal:  Retina       Date:  2017-08       Impact factor: 4.256

Review 7.  Artificial intelligence in OCT angiography.

Authors:  Tristan T Hormel; Thomas S Hwang; Steven T Bailey; David J Wilson; David Huang; Yali Jia
Journal:  Prog Retin Eye Res       Date:  2021-03-22       Impact factor: 21.198

8.  Plexus-Specific Detection of Retinal Vascular Pathologic Conditions with Projection-Resolved OCT Angiography.

Authors:  Rachel C Patel; Jie Wang; Thomas S Hwang; Miao Zhang; Simon S Gao; Mark E Pennesi; Steven T Bailey; Brandon J Lujan; Xiaogang Wang; David J Wilson; David Huang; Yali Jia
Journal:  Ophthalmol Retina       Date:  2018-01-10

Review 9.  An overview of the clinical applications of optical coherence tomography angiography.

Authors:  A C S Tan; G S Tan; A K Denniston; P A Keane; M Ang; D Milea; U Chakravarthy; C M G Cheung
Journal:  Eye (Lond)       Date:  2017-09-08       Impact factor: 3.775

Review 10.  Plexus-specific retinal vascular anatomy and pathologies as seen by projection-resolved optical coherence tomographic angiography.

Authors:  Tristan T Hormel; Yali Jia; Yifan Jian; Thomas S Hwang; Steven T Bailey; Mark E Pennesi; David J Wilson; John C Morrison; David Huang
Journal:  Prog Retin Eye Res       Date:  2020-07-24       Impact factor: 21.198

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