Stefan Sacu
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Explore the profile of Stefan Sacu including associated specialties, affiliations and a list of published articles.
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191
Citations
2315
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Recent Articles
11.
Sedova A, Scholda C, Huebl T, Steiner I, Sacu S, Georgopoulos M, et al.
J Clin Med
. 2023 Mar;
12(6).
PMID: 36983279
Background: At the Department of Ophthalmology and Optometry at the MUV surgical method (scleral buckling, vitrectomy, combined vitrectomy/scleral buckling) and timing (daytime, nighttime) for the treatment of primary rhegmatogenous retinal...
12.
Pawloff M, Linhardt D, Woletz M, Hummer A, Sacu S, Vasileiadi M, et al.
Transl Vis Sci Technol
. 2023 Mar;
12(3):6.
PMID: 36912591
Purpose: Retinotopic maps acquired using functional magnetic resonance imaging (fMRI) provide a valuable adjunct in the assessment of macular function at the level of the visual cortex. The present study...
13.
Told R, Reumueller A, Schranz M, Brugger J, Weigert G, Reiter G, et al.
Curr Eye Res
. 2023 Mar;
48(6):600-604.
PMID: 36891909
Purpose: Previous studies have identified a link between optical coherence tomography (OCT)-derived and OCT angiography (OCTA)-based parameters in patients with neovascular AMD (nAMD); the latter may serve as direct biomarkers...
14.
Stino H, Niederleithner M, Iby J, Sedova A, Schlegl T, Steiner I, et al.
Br J Ophthalmol
. 2022 Nov;
108(1):91-97.
PMID: 36376062
Aim: To assess the detection rate of retinal neovascularisation (NV) in eyes with proliferative diabetic retinopathy (PDR) using widefield optical coherence tomography angiography (WF-OCTA) in comparison to ultrawidefield fluorescein angiography...
15.
Stino H, Riessland S, Sedova A, Datlinger F, Sacu S, Schmidt-Erfurth U, et al.
Sci Rep
. 2022 Oct;
12(1):17449.
PMID: 36261470
Comparison of two ultra-widefield (UWF) color-fundus (CF) imaging devices in diabetic patients for visualization of retinal periphery and detection of early microvascular lesions. The total gradable areas (TGA) seen on...
16.
Gerendas B, Sadeghipour A, Michl M, Goldbach F, Mylonas G, Gruber A, et al.
Retina
. 2022 Aug;
42(9):1673-1682.
PMID: 35994584
Background/purpose: To apply an automated deep learning automated fluid algorithm on data from real-world management of patients with neovascular age-related macular degeneration for quantification of intraretinal/subretinal fluid volumes in optical...
17.
Schranz M, Told R, Hacker V, Reiter G, Reumueller A, Vogl W, et al.
Acta Ophthalmol
. 2022 Aug;
101(1):e95-e105.
PMID: 35912717
Purpose: To identify correlations between the vascular characteristics of macular neovascularization (MNV) obtained by optical coherence tomography angiography (OCTA) and distinct retinal fluid volumes in neovascular age-related macular degeneration (nAMD)....
18.
Sacu S, Eibenberger K, Schmidl D, Rezar-Dreindl S, Garhofer G, Brugger J, et al.
PLoS One
. 2022 Jul;
17(7):e0271166.
PMID: 35819932
Purpose: To evaluate the effect of intravitreal aflibercept monotherapy on arterial and venous oxygen saturation, retinal vessel diameter and flicker response in patients with newly diagnosed specific subtypes of exudative...
19.
Coulibaly L, Sacu S, Fuchs P, Bogunovic H, Faustmann G, Unterrainer C, et al.
Eye (Lond)
. 2022 Jul;
37(7):1464-1469.
PMID: 35790835
Introduction: In neovascular age-related macular degeneration (nAMD) the exact amount of fluid and its location on optical coherence tomography (OCT) have been defined as crucial biomarkers for disease activity and...
20.
Rezar-Dreindl S, Eibenberger K, Told R, Unterluggauer V, Sacu S, Schmidt-Erfurth U, et al.
Curr Eye Res
. 2022 Apr;
47(8):1186-1192.
PMID: 35416099
Purpose: To determine microvascular changes in patients with genetically proven Marfan syndrome. Methods: In a cross-sectional study, 32 eyes of 16 patients with genetically proven Marfan syndrome were evaluated using...