Robbert Struyven
Overview
Explore the profile of Robbert Struyven including associated specialties, affiliations and a list of published articles.
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13
Citations
118
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Recent Articles
1.
Ribeiro Reis A, Ioannidou E, Wagner S, Struyven R, Sun Z, Foster P, et al.
NPJ Womens Health
. 2024 Dec;
2(1):38.
PMID: 39654609
Oestradiol and progesterone levels are higher in menstruating women than men of the same age, and their receptors are present in their neurosensory retina and retinal pigment epithelium. However, the...
2.
Moraes G, Struyven R, Wagner S, Liu T, Chong D, Abbas A, et al.
Ophthalmol Sci
. 2024 Sep;
4(6):100570.
PMID: 39224530
Purpose: Application of artificial intelligence (AI) to macular OCT scans to segment and quantify volumetric change in anatomical and pathological features during intravitreal treatment for neovascular age-related macular degeneration (AMD)....
3.
Carmichael J, Costanza E, Blandford A, Struyven R, Keane P, Balaskas K
Sci Rep
. 2024 Mar;
14(1):6775.
PMID: 38514657
Artificial intelligence (AI) has great potential in ophthalmology. We investigated how ambiguous outputs from an AI diagnostic support system (AI-DSS) affected diagnostic responses from optometrists when assessing cases of suspected...
4.
Korot E, Goncalves M, Huemer J, Beqiri S, Khalid H, Kelly M, et al.
JAMA Ophthalmol
. 2023 Oct;
141(11):1029-1036.
PMID: 37856110
Importance: Democratizing artificial intelligence (AI) enables model development by clinicians with a lack of coding expertise, powerful computing resources, and large, well-labeled data sets. Objective: To determine whether resource-constrained clinicians...
5.
Wagner S, Raja L, Cortina-Borja M, Huemer J, Struyven R, Keane P, et al.
Br J Ophthalmol
. 2023 May;
108(4):625-632.
PMID: 37217292
Background/aims: Evaluation of telemedicine care models has highlighted its potential for exacerbating healthcare inequalities. This study seeks to identify and characterise factors associated with non-attendance across face-to-face and telemedicine outpatient...
6.
Wagner S, Liefers B, Radia M, Zhang G, Struyven R, Faes L, et al.
Lancet Digit Health
. 2023 Apr;
5(6):e340-e349.
PMID: 37088692
Background: Retinopathy of prematurity (ROP), a leading cause of childhood blindness, is diagnosed through interval screening by paediatric ophthalmologists. However, improved survival of premature neonates coupled with a scarcity of...
7.
Zhou Y, Wagner S, Chia M, Zhao A, Woodward-Court P, Xu M, et al.
Transl Vis Sci Technol
. 2022 Jul;
11(7):12.
PMID: 35833885
Purpose: To externally validate a deep learning pipeline (AutoMorph) for automated analysis of retinal vascular morphology on fundus photographs. AutoMorph has been made publicly available, facilitating widespread research in ophthalmic...
8.
Wagner S, Hughes F, Cortina-Borja M, Pontikos N, Struyven R, Liu X, et al.
BMJ Open
. 2022 Mar;
12(3):e058552.
PMID: 35296488
Purpose: Retinal signatures of systemic disease ('oculomics') are increasingly being revealed through a combination of high-resolution ophthalmic imaging and sophisticated modelling strategies. Progress is currently limited not mainly by technical...
9.
Abbas A, OByrne C, Fu D, Moraes G, Balaskas K, Struyven R, et al.
Graefes Arch Clin Exp Ophthalmol
. 2022 Feb;
260(8):2461-2473.
PMID: 35122132
Purpose: Neovascular age-related macular degeneration (nAMD) is a major global cause of blindness. Whilst anti-vascular endothelial growth factor (anti-VEGF) treatment is effective, response varies considerably between individuals. Thus, patients face...
10.
Korot E, Pontikos N, Drawnel F, Jaber A, Fu D, Zhang G, et al.
JAMA Ophthalmol
. 2021 Dec;
140(2):153-160.
PMID: 34913967
Importance: Telemedicine is accelerating the remote detection and monitoring of medical conditions, such as vision-threatening diseases. Meaningful deployment of smartphone apps for home vision monitoring should consider the barriers to...