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PubMed This is a summary of 82 peer-reviewed journal articles Updated

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.

Explore the Literature Visualize citation networks across 82 referenced papers

Top Authors

Tin Aung
Singapore National Eye Center
Augusto Azuara‐Blanco
Queen's University Belfast
Benjamin Y. Xu
University of Southern California
John Norrie
University of Aberdeen
Mingguang He
Hong Kong Polytechnic University
Gustavo Büchele Rodrigues
Universidade Estadual de Campinas (UNICAMP)
Homero Gusmão de Almeida
Universidade Federal de Minas Gerais
Xinghuai Sun
Chinese Academy of Medical Sciences & Peking Union Medical College
Shan C. Lin
Glaucoma Research Foundation
Harsha L. Rao
Maastricht University

Top Institutions

Ranked by publications Top 10 institutions
04

Beijing Tongren Hospital

Beijing, China

114 papers
07

University of Southern California

Los Angeles, United States

61 papers

References

References (82)
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    The genetic mechanisms of primary angle closure glaucoma.

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    Retinitis pigmentosa with concomitant essential iris atrophy and glaucoma - case report.

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    Managing Primary Angle Closure Glaucoma - The Role of Lens Extraction in this Era.

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    PLATEAU IRIS--DIAGNOSIS AND TREATMENT.

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    Iridotomy to slow progression of angle-closure glaucoma.

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    Effectiveness of early lens extraction for the treatment of primary angle-closure glaucoma (EAGLE): a randomised controlled trial.

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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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    Neovascular glaucoma: a review.

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    International journal of retina and vitreous 2016; (2()):26 doi:10.1186/s40942-016-0051-x.

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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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    Fluid and structure coupling analysis of the interaction between aqueous humor and iris.

    Wang W, Qian X, Song H, et al.

    Biomedical engineering online 2016; (15(Suppl 2)):133 doi:10.1186/s12938-016-0261-3.

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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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    [Relationships among illness perceptions, medication beliefs and medication adherence in primary angle closure glaucoma patients].

    Jiang H, Zhao L, Yang L, Cai HY

    [Zhonghua yan ke za zhi] Chinese journal of ophthalmology 2017; (53(2)):109-114 doi:10.3760/cma.j.issn.0412-4081.2017.02.008.

    PMID: 28260361
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    Clear Lens Extraction for Early Angle-Closure Glaucoma: Revolution or Overtreatment?

    Shi K, You Z, Wang C

    Medical principles and practice : international journal of the Kuwait University, Health Science Centre 2017; (26(3)):297-298 doi:10.1159/000471512.

    PMID: 28315873
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    Changing patterns in treatment of angle closure glaucoma.

    Napier ML, Azuara-Blanco A

    Current opinion in ophthalmology 2018; (29(2)):130-134 doi:10.1097/ICU.0000000000000453.

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    Evaluation of Primary Angle-Closure Glaucoma Susceptibility Loci in Patients with Early Stages of Angle-Closure Disease.

    Nongpiur ME, Cheng CY, Duvesh R, et al.

    Ophthalmology 2018; (125(5)):664-670 doi:10.1016/j.ophtha.2017.11.016.

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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.

    PMID: 29352976
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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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    Combined Phacoemulsification and Goniosynechialysis under an Endoscope for Chronic Primary Angle-Closure Glaucoma.

    Nie L, Pan W, Fang A, et al.

    Journal of ophthalmology 2018; (2018()):8160184 doi:10.1155/2018/8160184.

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    Ten-year incidence of primary angle closure in elderly Chinese: the Liwan Eye Study.

    Wang L, Huang W, Huang S, et al.

    The British journal of ophthalmology 2019; (103(3)):355-360 doi:10.1136/bjophthalmol-2017-311808.

    PMID: 29777045
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    Contemporary approach to the diagnosis and management of primary angle-closure disease.

    Razeghinejad MR, Myers JS

    Survey of ophthalmology 2018; (63(6)):754-768 doi:10.1016/j.survophthal.2018.05.001.

    PMID: 29777727
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    COL18A1 is a candidate eye iridocorneal angle-closure gene in humans.

    Suri F, Yazdani S, Chapi M, et al.

    Human molecular genetics 2018; (27(21)):3772-3786 doi:10.1093/hmg/ddy256.

    PMID: 30007336
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    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.

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    Argon laser peripheral iridoplasty for chronic primary angle-closure and angle-closure glaucoma in caucasians.

    Pillunat KR, Spoerl E, Orphal J, Pillunat LE

    Acta ophthalmologica 2019; (97(2)):e225-e230 doi:10.1111/aos.13878.

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    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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    Assessment of Circumferential Angle Closure with Swept-Source Optical Coherence Tomography: a Community Based Study.

    Porporato N, Baskaran M, Tun TA, et al.

    American journal of ophthalmology 2019; (199()):133-139 doi:10.1016/j.ajo.2018.11.015.

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    Current management options in primary angle closure disease.

    Krishnadas R

    Indian journal of ophthalmology 2019; (67(3)):321-323 doi:10.4103/ijo.IJO_1932_18.

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    Effect of physical activity on severity of primary angle closure glaucoma.

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    Nanophthalmos in children: morphometric and clinical characterization.

    Agarkar S, Koladiya N, Kumar M, et al.

    Journal of AAPOS : the official publication of the American Association for Pediatric Ophthalmology and Strabismus 2020; (24(1)):27.e1-27.e5 doi:10.1016/j.jaapos.2019.11.010.

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    Biometric indicators of eyes with occult lens subluxation inducing secondary acute angle closure.

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    BMC ophthalmology 2020; (20(1)):87 doi:10.1186/s12886-020-01355-7.

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    Clear lens extraction in eyes with primary angle closure and primary angle-closure glaucoma.

    Costa VP, Leung CKS, Kook MS, et al.

    Survey of ophthalmology 2020; (65(6)):662-674 doi:10.1016/j.survophthal.2020.04.003.

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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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    Evaluation of Refractive Status and Ocular Biometric Parameters in Primary Angle Closure Disease.

    Loh CC, Kamaruddin H, Bastion MC, et al.

    Ophthalmic research 2021; (64(2)):246-252 doi:10.1159/000510925.

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    Acute Angle-Closure Glaucoma Secondary to Vitreous Hemorrhage Diagnosed with the Aid of Point-of-Care Ultrasound.

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    The Journal of emergency medicine 2020; (59(6)):e235-e237 doi:10.1016/j.jemermed.2020.08.015.

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    Detection of Primary Angle Closure Glaucoma Progression by Optical Coherence Tomography.

    Kurysheva NI, Lepeshkina LV

    Journal of glaucoma 2021; (30(5)):410-420 doi:10.1097/IJG.0000000000001829.

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    Lens extraction for chronic angle-closure glaucoma.

    Ong AY, Ng SM, Vedula SS, Friedman DS

    The Cochrane database of systematic reviews 2021; (3()):CD005555 doi:10.1002/14651858.CD005555.pub3.

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    Evaluation of phacoemulsification (ultrasound) cataract surgery on the dynamics of the anterior segment of primary angle closure by AS-OCT.

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    American journal of translational research 2021; (13(4)):3156-3164.

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    Bilateral posterior scleritis presenting as acute primary angle closure: A case report.

    Wen C, Duan H

    World journal of clinical cases 2021; (9(15)):3779-3786 doi:10.12998/wjcc.v9.i15.3779.

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    Biallelic variants in CPAMD8 are associated with primary open-angle glaucoma and primary angle-closure glaucoma.

    Li X, Sun W, Xiao X, et al.

    The British journal of ophthalmology 2022; (106(12)):1710-1715 doi:10.1136/bjophthalmol-2020-318668.

    PMID: 34154991
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    Ultrasound biomicroscopy in glaucoma assessment.

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    Romanian journal of ophthalmology 2021; (65(2)):114-119 doi:10.22336/rjo.2021.24.

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    Implications of the Relationship Between Refractive Error and Biometry in the Pathogenesis of Primary Angle Closure.

    Shon K, Sung KR, Yoon JY

    Investigative ophthalmology & visual science 2021; (62(10)):38 doi:10.1167/iovs.62.10.38.

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    Ocular Biometric Risk Factors for Progression of Primary Angle Closure Disease: The Zhongshan Angle Closure Prevention Trial.

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    Blindness in glaucoma: primary open-angle glaucoma versus primary angle-closure glaucoma-a meta-analysis.

    George R, Panda S, Vijaya L

    Eye (London, England) 2022; (36(11)):2099-2105 doi:10.1038/s41433-021-01802-9.

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    Association of peripheral anterior synechia, intraocular pressure, and glaucomatous optic neuropathy in primary angle-closure diseases.

    Zhang M, Mao GY, Ye C, et al.

    International journal of ophthalmology 2021; (14(10)):1533-1538 doi:10.18240/ijo.2021.10.09.

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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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    Ocular Biometry of Primary Angle-Closure Disease in Younger Patients.

    Lin S, Zuo C, Liu Y, et al.

    Frontiers in medicine 2021; (8()):772578 doi:10.3389/fmed.2021.772578.

    PMID: 34805232
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    Bilateral Acute Angle-Closure Glaucoma: A Case Report of an Unusual Cause of Acute Headache in a Child.

    Kear B, Gold CR, Bhola R

    Clinical practice and cases in emergency medicine 2021; (5(4)):443-446 doi:10.5811/cpcem.2021.7.52671.

    PMID: 34813440
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    Numerical study of aqueous humor flow and iris deformation with pupillary block and the efficacy of laser peripheral iridotomy.

    Cai JC, Chen YL, Cao YH, et al.

    Clinical biomechanics (Bristol, Avon) 2022; (92()):105579 doi:10.1016/j.clinbiomech.2022.105579.

    PMID: 35085976
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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.

    PMID: 35387778
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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.

    PMID: 35725765
  55. 55

    Glaucoma Screening in Family Members of Glaucoma Patients at a Tertiary Eye Hospital in Eastern Region of Nepal.

    Bhandari RD, Khanal B, Poudel M, et al.

    Nepalese journal of ophthalmology : a biannual peer-reviewed academic journal of the Nepal Ophthalmic Society : NEPJOPH 2021; (13(24)):128-136 doi:10.3126/nepjoph.v13i2.34673.

    PMID: 35996779
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    Iridotomy to slow progression of visual field loss in angle-closure glaucoma.

    Rouse B, Le JT, Gazzard G

    The Cochrane database of systematic reviews 2023; (1()):CD012270 doi:10.1002/14651858.CD012270.pub3.

    PMID: 36621864
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    [Evaluation of the Manchester Triage System in Patients with Acute Primary Angle Closure Attack: A Retrospective Study].

    Ribeiro M, Barbosa-Breda J, Gonçalves F, et al.

    Acta medica portuguesa 2023; (36(11)):698-705 doi:10.20344/amp.19170.

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    Meta-Analysis of Phacoemulsification and Laser Peripheral Iridotomy in the Treatment of Primary Angle-Closure Glaucoma.

    Xie J, Li P, Han B

    Journal of ophthalmology 2023; (2023()):6732424 doi:10.1155/2023/6732424.

    PMID: 37124065
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    Zonulopathy Identified During Cataract Extraction in Patients With Primary Angle Closure Disease.

    Zhang H, Zhang Y, Zhang S, et al.

    Journal of glaucoma 2023; (32(9)):783-791 doi:10.1097/IJG.0000000000002247.

    PMID: 37311010
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    Outcomes of Filtering Surgery Versus Clear Lens Extraction in Young Patients With Angle-Closure Glaucoma.

    Li M, Zhu W, Fan X, et al.

    American journal of ophthalmology 2024; (258()):145-157 doi:10.1016/j.ajo.2023.07.025.

    PMID: 37543298
  61. 61

    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
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    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.

    PMID: 37680292
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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
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    Bilateral angle closure glaucoma with retinitis pigmentosa in young patients: case series.

    Lu Z, Wang L, Ying X, Tan L

    BMC ophthalmology 2023; (23(1)):458 doi:10.1186/s12886-023-03190-y.

    PMID: 37968604
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    [The effect of phacoemulsification of age-related cataract on intraocular pressure and iridocorneal angle parameters in primary open-angle glaucoma].

    Antonov AA, Khderi K, Bersunkayev MK, Pateyuk LS

    Vestnik oftalmologii 2023; (139(6)):60-68 doi:10.17116/oftalma202313906160.

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    Genetic Associations of Primary Angle-Closure Disease: A Systematic Review and Meta-Analysis.

    Liang YJ, Wang YY, Rong SS, et al.

    JAMA ophthalmology 2024; (142(5)):437-444 doi:10.1001/jamaophthalmol.2024.0363.

    PMID: 38546604
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    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
  68. 68

    Anterior Segment Changes in Patients With Glaucoma Following Cataract Surgery.

    Kouroupaki AI, Triantafyllopoulos GI, Pateras E, et al.

    Cureus 2024; (16(4)):e58703 doi:10.7759/cureus.58703.

    PMID: 38779247
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    Associations of static and dynamic iris parameters in healthy Chinese individuals: the Handan Eye Study.

    Wang J, Liu T, Li S, et al.

    Eye (London, England) 2024; (38(18)):3504-3510 doi:10.1038/s41433-024-03345-1.

    PMID: 39294231
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    Differences and Similarities Between Primary Open Angle Glaucoma and Primary Angle-Closure Glaucoma.

    Wang Y, Guo Y, Zhang Y, et al.

    Eye and brain 2024; (16()):39-54 doi:10.2147/EB.S472920.

    PMID: 39309574
  71. 71

    Comparative analysis of biometry and anterior chamber metrics in the eyes of extreme hyperopic and emmetropic children.

    Stern B, Ben-Eli H, Karshai I, et al.

    Journal of AAPOS : the official publication of the American Association for Pediatric Ophthalmology and Strabismus 2024; (28(6)):104032 doi:10.1016/j.jaapos.2024.104032.

    PMID: 39522591
  72. 72

    Combined Phacoemulsification, Goniosynechialysis and Ab Interno Trabeculectomy in Primary Angle-closure Glaucoma: Long-term Results.

    Yang F, Ma Y, Liang Z, et al.

    International journal of medical sciences 2025; (22(2)):451-459 doi:10.7150/ijms.103795.

    PMID: 39781536
  73. 73

    Genetic association of single nucleotide polymorphisms in PLEKHA7 gene with primary angle closure glaucoma (PACG) in a Central-Eastern Punjab cohort of Pakistan.

    Asif R, Khalid A, Bashir R, et al.

    Molecular biology reports 2025; (52(1)):191 doi:10.1007/s11033-025-10292-x.

    PMID: 39903387
  74. 74

    Functionally deficient UBOX5 variants and primary angle-closure glaucoma.

    Li Z, Chng WL, Liu Z, et al.

    Nature communications 2025; (16(1)):7620 doi:10.1038/s41467-025-62775-x.

    PMID: 40817263
  75. 75

    Diagnostic analysis of angle-closure using the iris-trabecular contact (ITC) index of CASIA2 swept source anterior segment optical coherence tomography.

    Rodriguez-Una I, Espinoza G, Martínez-Alberquilla I, et al.

    International ophthalmology 2025; (45(1)):410 doi:10.1007/s10792-025-03752-7.

    PMID: 41081976
  76. 76

    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
  77. 77

    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
  78. 78

    Biometry in patients with asymmetric primary angle closure disease.

    Bidasaria A, Dey A, Lagvankar MA, Arunkumar WV

    Clinical & experimental optometry 2026; (109(4)):652-659 doi:10.1080/08164622.2025.2589390.

    PMID: 41297965
  79. 79

    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
  80. 80

    Declining laser peripheral iridotomy for angle closure alongside rising cataract surgeries: A nationwide cohort study in South Korea.

    Kim W, Park CM, Kong S, et al.

    PloS one 2026; (21(2)):e0343427 doi:10.1371/journal.pone.0343427.

    PMID: 41719362
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    Polygenic risk scores for glaucoma: Impact on diagnosis and disease course.

    Kolovos A, Aung T, Khawaja AP, et al.

    Progress in retinal and eye research 2026; (112()):101469 doi:10.1016/j.preteyeres.2026.101469.

    PMID: 41962831
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    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