Research & Literature
Explore the leading researchers and institutions driving advances in this area, and dive into the full body of literature that informs this resource.
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Singapore National Eye Center
Singapore, Singapore
Sun Yat-sen University
Guangzhou, China
University of Southern California
Los Angeles, United States
University of Aberdeen
Aberdeen, United Kingdom
Massachusetts Eye and Ear Infirmary
Boston, United States
All India Institute of Medical Sciences
New Delhi, India
Narayana Nethralaya
Bengaluru, India
Wenzhou Medical University
Wenzhou, China
National University of Singapore
Singapore, Singapore
University of California San Diego
San Diego, United States
References
References (67)
- 1
Secondary angle closure glaucoma by lupus choroidopathy as an initial presentation of systemic lupus erythematosus: a case report.
Han YS, min Yang C, Lee SH, et al.
BMC ophthalmology 2015; (15()):148 doi:10.1186/s12886-015-0144-6.
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Diurnal Intraocular Pressure Fluctuation in Eyes with Angle-closure.
Bhartiya S, Ichhpujani P
Journal of current glaucoma practice 2015; (9(1)):20-3 doi:10.5005/jp-journals-10008-1178.
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Managing Primary Angle Closure Glaucoma - The Role of Lens Extraction in this Era.
Baig N, Kam KW, Tham CC
The open ophthalmology journal 2016; (10()):86-93 doi:10.2174/1874364101610010086.
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Evaluation of the Painful Eye.
Pflipsen M, Massaquoi M, Wolf S
American family physician 2016; (93(12)):991-8.
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PLATEAU IRIS--DIAGNOSIS AND TREATMENT.
Stefan C, Iliescu DA, Batras M, et al.
Romanian journal of ophthalmology 2015; (59(1)):14-8.
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Effectiveness of early lens extraction for the treatment of primary angle-closure glaucoma (EAGLE): a randomised controlled trial.
Azuara-Blanco A, Burr J, Ramsay C, et al.
Lancet (London, England) 2016; (388(10052)):1389-1397 doi:10.1016/S0140-6736(16)30956-4.
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Changes in Anterior Segment Morphology and Predictors of Angle Widening after Laser Iridotomy in South Indian Eyes.
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Early lens extraction with intraocular lens implantation for the treatment of primary angle closure glaucoma: an economic evaluation based on data from the EAGLE trial.
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Vessel Density and Structural Measurements of Optical Coherence Tomography in Primary Angle Closure and Primary Angle Closure Glaucoma.
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American journal of ophthalmology 2017; (177()):106-115 doi:10.1016/j.ajo.2017.02.020.
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Bilateral acute angle closure glaucoma and myopic shift by topiramate-induced ciliochoroidal effusion: case report and literature review.
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International ophthalmology 2018; (38(6)):2639-2648 doi:10.1007/s10792-017-0740-y.
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Acute Angle-closure Glaucoma Associated With Aripiprazole in the Setting of Plateau Iris Configuration.
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Journal of glaucoma 2018; (27(2)):e40-e43 doi:10.1097/IJG.0000000000000836.
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Changing patterns in treatment of angle closure glaucoma.
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Current opinion in ophthalmology 2018; (29(2)):130-134 doi:10.1097/ICU.0000000000000453.
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Qualitative and quantitative evaluation of acute angle-closure mechanisms.
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BMC ophthalmology 2017; (17(1)):246 doi:10.1186/s12886-017-0635-8.
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Anterior Segment Imaging for Angle Closure.
Chansangpetch S, Rojanapongpun P, Lin SC
American journal of ophthalmology 2018; (188()):xvi-xxix doi:10.1016/j.ajo.2018.01.006.
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Laser Peripheral Iridotomy in Primary Angle Closure: A Report by the American Academy of Ophthalmology.
Radhakrishnan S, Chen PP, Junk AK, et al.
Ophthalmology 2018; (125(7)):1110-1120 doi:10.1016/j.ophtha.2018.01.015.
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Simplifying "target" intraocular pressure for different stages of primary open-angle glaucoma and primary angle-closure glaucoma.
Sihota R, Angmo D, Ramaswamy D, Dada T
Indian journal of ophthalmology 2018; (66(4)):495-505 doi:10.4103/ijo.IJO_1130_17.
PMID: 29582808 - 17
Bilateral acute angle-closure glaucoma induced by duloxetine.
Mahmut A, Tunc V, Demiryurek E, Gursoy A
Ideggyogyaszati szemle 2017; (70(9-10)):358-360 doi:10.18071/isz.70.0358.
PMID: 29870629 - 18
Early Phacoemulsification After Acute Angle Closure in Patients With Coexisting Cataract.
Römkens HCS, Beckers HJM, Schouten JSAG, et al.
Journal of glaucoma 2018; (27(8)):711-716 doi:10.1097/IJG.0000000000000998.
PMID: 30005031 - 19
Low Sensitivity of the Van Herick Method for Detecting Gonioscopic Angle Closure Independent of Observer Expertise.
Johnson TV, Ramulu PY, Quigley HA, Singman EL
American journal of ophthalmology 2018; (195()):63-71 doi:10.1016/j.ajo.2018.07.026.
PMID: 30071210 - 20
A Novel Association between Oxybutynin Use and Bilateral Acute Angle Closure Glaucoma: A Case Report and Literature Review.
Haddad A, Arwani M, Sabbagh O
Cureus 2018; (10(6)):e2732 doi:10.7759/cureus.2732.
PMID: 30087808 - 21
Primary Angle-Closure Glaucoma With Normal Intraocular Pressure at the First Visit: Its Prevalence and Ocular Characteristics.
Oh WH, Kim BG, Kyung H, Lee JH
Journal of glaucoma 2019; (28(1)):32-37 doi:10.1097/IJG.0000000000001099.
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Prevalence of Primary Glaucoma as Diagnosed by Study Optometrists of L. V. Prasad eye Institute - Glaucoma Epidemiology and Molecular Genetics Study.
Addepalli UK, Jonnadula GB, Garudadri CS, et al.
Ophthalmic epidemiology 2019; (26(3)):150-154 doi:10.1080/09286586.2018.1551961.
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Intermediate results of phaco-endocycloplasty in an exclusive cohort of angle closure glaucoma: potential for change.
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International ophthalmology 2019; (39(10)):2257-2265 doi:10.1007/s10792-018-01062-9.
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Contribution of the Visante® OCT and B-scan ultrasound in the diagnosis and follow up of a topiramate-induced bilateral ciliochoroidal effusion syndrome.
Diaz-Cespedes RA, Toro-Giraldo D, Olate-Perez A, et al.
Archivos de la Sociedad Espanola de Oftalmologia 2019; (94(8)):391-395 doi:10.1016/j.oftal.2019.01.004.
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Anterior Segment Optical Coherence Tomography: Applications for Clinical Care and Scientific Research.
Shan J, DeBoer C, Xu BY
Asia-Pacific journal of ophthalmology (Philadelphia, Pa.) 2019; (8(2)):146-157 doi:10.22608/APO.201910.
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Efficacy and Safety of Argon Laser Peripheral Iridoplasty and Systemic Medical Therapy in Asian Patients with Acute Primary Angle Closure: A Meta-Analysis of Randomized Controlled Trials.
Cai W, Lou Q, Fan J, et al.
Journal of ophthalmology 2019; (2019()):7697416 doi:10.1155/2019/7697416.
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Effect of physical activity on severity of primary angle closure glaucoma.
Chong Seong NT, Yaakub A, Jalil RA, et al.
Therapeutic advances in ophthalmology 2019; (11()):2515841419864855 doi:10.1177/2515841419864855.
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HLA-DPA1 gene polymorphism in primary glaucoma.
Li JH, Shao JF, Sui ZG, Qin YX
European review for medical and pharmacological sciences 2019; (23(3 Suppl)):24-30 doi:10.26355/eurrev_201908_18623.
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Angiographic features of drug-induced bilateral angle closure and transient myopia with Ciliochoroidal effusion.
Kang YK, Son BJ, Park DH, Shin JP
BMC ophthalmology 2019; (19(1)):213 doi:10.1186/s12886-019-1230-y.
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Single Dose of Pseudoephedrine Induces Simultaneous Bilateral Acute Angle Closure Crisis.
Spencer BG, Baskin J, Giarola BF, Craig JE
Case reports in ophthalmology 2019; (10(3)):365-368 doi:10.1159/000503854.
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Phacoemulsification vs phacoemulsification with micro-bypass stent implantation in primary angle closure and primary angle closure glaucoma: A randomized single-masked clinical study.
Chen DZ, Sng CCA, Sangtam T, et al.
Clinical & experimental ophthalmology 2020; (48(4)):450-461 doi:10.1111/ceo.13721.
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Exploring the Occurrence Mechanisms of Acute Primary Angle Closure by Comparative Analysis of Ultrasound Biomicroscopic Data of the Attack and Fellow Eyes.
Wang F, Wang D, Wang L
BioMed research international 2020; (2020()):8487907 doi:10.1155/2020/8487907.
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Drug-induced Acute Angle-closure Glaucoma: A Review.
Yang MC, Lin KY
Journal of current glaucoma practice 2019; (13(3)):104-109 doi:10.5005/jp-journals-10078-1261.
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Safety and efficacy of incisional goniotomy as an adjunct with phacoemulsification in primary angle-closure glaucoma.
Gupta S, Sethi A, Yadav S, et al.
Journal of cataract and refractive surgery 2021; (47(4)):504-511 doi:10.1097/j.jcrs.0000000000000481.
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The Challenge of Managing Bilateral Acute Angle-closure Glaucoma in the Presence of Active SARS-CoV-2 Infection.
Krawitz BD, Sirinek P, Doobin D, et al.
Journal of glaucoma 2021; (30(3)):e50-e53 doi:10.1097/IJG.0000000000001763.
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Fifteen-Year Incidence Rate of Primary Angle Closure Disease in the Andhra Pradesh Eye Disease Study.
Choudhari NS, Khanna RC, Marmamula S, et al.
American journal of ophthalmology 2021; (229()):34-44 doi:10.1016/j.ajo.2021.02.030.
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Comparing the Safety and Efficacy of Phacogoniosynechialysis With Phacotrabeculectomy in the Management of Refractory Acute Primary Closure Angle Glaucoma With Cataract: A Multicenter Randomized Trial.
Nguyen Xuan H, Nguyen Dinh N, Nguyen Thu H, et al.
Journal of glaucoma 2021; (30(7)):552-558 doi:10.1097/IJG.0000000000001868.
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Evaluation of phacoemulsification (ultrasound) cataract surgery on the dynamics of the anterior segment of primary angle closure by AS-OCT.
Zhong L, Zuo J, Jin Q, et al.
American journal of translational research 2021; (13(4)):3156-3164.
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The Value of Anterior Segment Optical Coherence Tomography in Different Types of Corneal Infections: An Update.
Abdelghany AA, D'Oria F, Alio Del Barrio J, Alio JL
Journal of clinical medicine 2021; (10(13)) doi:10.3390/jcm10132841.
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Long-term perimetric stabilization with a management algorithm of set target intraocular pressure in different severities of primary angle-closure glaucoma.
Sihota R, Shakrawal J, Sharma AK, et al.
Indian journal of ophthalmology 2021; (69(10)):2721-2727 doi:10.4103/ijo.IJO_329_21.
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Ocular Biometric Risk Factors for Progression of Primary Angle Closure Disease: The Zhongshan Angle Closure Prevention Trial.
Xu BY, Friedman DS, Foster PJ, et al.
Ophthalmology 2022; (129(3)):267-275 doi:10.1016/j.ophtha.2021.10.003.
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Blindness in glaucoma: primary open-angle glaucoma versus primary angle-closure glaucoma-a meta-analysis.
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Prevalence and risk factors for primary angle-closure disease spectrum: The Colombian glaucoma study.
Martínez-Blanco AM, Cantor EJ, Valencia-Peña C
European journal of ophthalmology 2021; 11206721211060153 doi:10.1177/11206721211060153.
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Olanzapine-Induced Acute Angle Closure.
Alarfaj MA, Almater AI
The American journal of case reports 2021; (22()):e934432 doi:10.12659/AJCR.934432.
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Predictors of long-term intraocular pressure control after lens extraction in primary angle closure glaucoma: results from the EAGLE trial.
Mitchell WG, Azuara-Blanco A, Foster PJ, et al.
The British journal of ophthalmology 2023; (107(8)):1072-1078 doi:10.1136/bjophthalmol-2021-319765.
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Prevention of angle-closure glaucoma: balancing risk and benefit.
Foster PJ, Ng WS, Nolan WP, et al.
Eye (London, England) 2022; (36(12)):2229-2231 doi:10.1038/s41433-021-01881-8.
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Anterior Segment Biometry in Primary Angle Closure Glaucoma Patients with Visual Field Progression: Comparison between Malays and Chinese.
Neoh FP, Y A, Siti AA, Liza-Sharmini AT
Journal of current glaucoma practice 2023; (17(1)):3-8 doi:10.5005/jp-journals-10078-1391.
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Twenty-Four-Hour Intraocular Pressure in Chronic Primary Angle-Closure Disease.
Supakontanasan W, Suwan Y, Nilphatanakorn S, et al.
Journal of glaucoma 2023; (32(10)):854-859 doi:10.1097/IJG.0000000000002280.
PMID: 37566875 - 49
Post-Operative Delirium Masking Acute Angle Closure Glaucoma.
Sim ZJ, Jieyin X, Suhitharan T
Journal of critical care medicine (Universitatea de Medicina si Farmacie din Targu-Mures) 2023; (9(3)):187-191 doi:10.2478/jccm-2023-0016.
PMID: 37588183 - 50
Plateau Iris: A Review.
Tabatabaei SM, Fakhraie G, Ansari S, et al.
Journal of current ophthalmology 2023; (35(1)):11-16 doi:10.4103/joco.joco_319_22.
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Management of Primary Angle Closure Disease.
Paulose S, Vinod K
International ophthalmology clinics 2023; (63(4)):153-166 doi:10.1097/IIO.0000000000000478.
PMID: 37755449 - 52
Comparison of Structural and Functional Features in Primary Angle Closure and Open Angle Glaucomas.
Sun JA, Yuan M, Johnson GE, et al.
Journal of glaucoma 2024; (33(4)):254-261 doi:10.1097/IJG.0000000000002341.
PMID: 38031290 - 53
Novel diagnostic indicators for acute angle closure secondary to lens subluxation based on anterior segment and lens parameters.
Tang Y, Gao Y, Yu X, et al.
Heliyon 2024; (10(3)):e25164 doi:10.1016/j.heliyon.2024.e25164.
PMID: 38327450 - 54
Patterns and Disparities in Recorded Gonioscopy During Initial Glaucoma Evaluations in the United States.
Lee JH, Yoo K, Lung K, et al.
American journal of ophthalmology 2024; (264()):90-98 doi:10.1016/j.ajo.2024.02.032.
PMID: 38423202 - 55
Correlation of anterior segment optical coherence tomography and ultrasound biomicroscopy in congenital corneal opacity.
Yangzes S, Kaushik S, Malhotra C, et al.
Journal of AAPOS : the official publication of the American Association for Pediatric Ophthalmology and Strabismus 2024; (28(2)):103863 doi:10.1016/j.jaapos.2024.103863.
PMID: 38458600 - 56
Angle-closure glaucoma associated with vitreous prolapse after neodymium-doped yttrium-aluminumgarnet laser posterior capsulotomy.
Matos AG, Barbosa Neto JP, Cavalcante CPP, et al.
Arquivos brasileiros de oftalmologia 2024; (87(3)):e20220058 doi:10.5935/0004-2749.2022-0058.
PMID: 38537037 - 57
Proportion of Angle Closure Glaucoma in Tamale, Ghana.
Liu CK, Ali O, Murdoch I, Simon J
Journal of glaucoma 2024; (33(9)):709-714 doi:10.1097/IJG.0000000000002383.
PMID: 38551403 - 58
A Comparative Study of Anterior Segment Optical Coherence Tomography and Gonioscopy in Detection of Narrow, Occludable Angles.
Lune A, Prabhudesai A
Cureus 2024; (16(9)):e69879 doi:10.7759/cureus.69879.
PMID: 39439605 - 59
Prevalence and Risk Factors of Primary Angle Closure Disease in an Adult Chinese American Population: The Chinese American Eye Study.
Xu BY, Richter GM, Burkemper BS, et al.
American journal of ophthalmology 2025; (274()):32-41 doi:10.1016/j.ajo.2025.02.037.
PMID: 40023353 - 60
Comparing the effect of sympathomimetic/anticholinergic psychotropic drugs with that of non-sympathomimetic/anticholinergic psychotropic drugs on IOP and angle parameters among patients on long-term therapy.
Behera G, Lenin J, Bharadwaj B, et al.
Indian journal of ophthalmology 2025; (73(Suppl 3)):S454-S459 doi:10.4103/IJO.IJO_2804_24.
PMID: 40444306 - 61
Comparative analysis of pachymetry and assessment of corneal topography in pediatric congenital corneal opacities: A study of AS-OCT and UBM imaging modalities.
Yangzes S, Sharma D, Thakur A, et al.
Indian journal of ophthalmology 2025; (73(9)):1383-1388 doi:10.4103/IJO.IJO_242_25.
PMID: 40880157 - 62
Ultrasound Biomicroscopic Study of the Effects of 1% Tropicamide on the Anterior Segment and Ciliary Body in Cats.
Kim D, Her Y, Jung JS, et al.
Veterinary ophthalmology 2026; (29(2)):e70083 doi:10.1111/vop.70083.
PMID: 41047838 - 63
GWAS for primary angle-closure glaucoma identifies loci related to ocular biometry and morphology.
Luben RN, Biradar MI, Stuart KV, et al.
Nature communications 2025; (16(1)):10003 doi:10.1038/s41467-025-64949-z.
PMID: 41238566 - 64
Longitudinal quantitative assessment of macular retinal and choroidal remodeling after trabeculectomy in chronic primary angle-closure glaucoma using ultra-widefield SS-OCTA.
Guo Y, Zhao J, Chen Z
Scientific reports 2025; (15(1)):45280.
PMID: 41286299 - 65
Bilateral simultaneous acute angle closure glaucoma following anticholinergic therapy for vestibular neuritis.
Kamgarpour H, Kopecny LR, Ong RM, et al.
Practical neurology 2026; (26(4)):379-381 doi:10.1136/pn-2025-004660.
PMID: 41436172 - 66
The impact of health belief model-based education and simulation training on clinical outcomes and self-management indicators in primary angle-closure glaucoma patients.
Chen S, Chen X, Yin C, et al.
Psychology, health & medicine 2026; 1-17 doi:10.1080/13548506.2026.2623306.
PMID: 41636475 - 67
Swept-source optical coherence tomography quantitative scoring system accurately predicts postoperative intraocular pressure control and visual outcomes in primary angle-closure glaucoma.
Li H, Yao Z
American journal of translational research 2026; (18(3)):1972-1985 doi:10.62347/PIKB3348.
PMID: 42007135