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PubMed This is a summary of 108 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 108 referenced papers

Top Authors

Tin Aung
Singapore National Eye Center
Gus Gazzard
Moorfields Eye Hospital NHS Foundation Trust
Felipe A. Medeiros
University of Miami
Hari Jayaram
Moorfields Eye Hospital NHS Foundation Trust
Janey L. Wiggs
Massachusetts Eye and Ear Infirmary
Keith Barton
Moorfields Eye Hospital NHS Foundation Trust
Chiea Chuen Khor
Agency for Science, Technology and Research
Richard Wormald
Moorfields Eye Hospital NHS Foundation Trust
Steven J. Gedde
University of Miami
Rupert Bourne
Heidelberg University

Top Institutions

Ranked by publications Top 10 institutions
08

References

References (108)
  1. 1

    Corneal hysteresis and its relevance to glaucoma.

    Deol M, Taylor DA, Radcliffe NM

    Current opinion in ophthalmology 2015; (26(2)):96-102 doi:10.1097/ICU.0000000000000130.

    PMID: 25611166
  2. 2

    ENDOPHTHALMITIS CAUSED BY PSEUDOMONAS AERUGINOSA: Clinical Features, Antibiotic Susceptibilities, and Treatment Outcomes.

    Sridhar J, Kuriyan AE, Flynn HW, Miller D

    Retina (Philadelphia, Pa.) 2015; (35(6)):1101-6 doi:10.1097/IAE.0000000000000469.

    PMID: 25658178
  3. 3

    Correlation between Central Corneal Thickness and Intraocular Pressure Measured by Goldmann Applanation Tonometry or Pascal Dynamic Contour Tonometry.

    Katsimpris JM, Theoulakis PE, Vasilopoulos K, et al.

    Klinische Monatsblatter fur Augenheilkunde 2015; (232(4)):414-8 doi:10.1055/s-0035-1545792.

    PMID: 25902089
  4. 4

    The Prevalence and Types of Glaucoma in an Urban Chinese Population: The Singapore Chinese Eye Study.

    Baskaran M, Foo RC, Cheng CY, et al.

    JAMA ophthalmology 2015; (133(8)):874-80 doi:10.1001/jamaophthalmol.2015.1110.

    PMID: 25974263
  5. 5

    Selective laser trabeculoplasty: current perspectives.

    Leahy KE, White AJ

    Clinical ophthalmology (Auckland, N.Z.) 2015; (9()):833-41 doi:10.2147/OPTH.S53490.

    PMID: 26005327
  6. 6

    Intraocular Pressure and the Mechanisms Involved in Resistance of the Aqueous Humor Flow in the Trabecular Meshwork Outflow Pathways.

    Tamm ER, Braunger BM, Fuchshofer R

    Progress in molecular biology and translational science 2015; (134()):301-14.

    PMID: 26310162
  7. 7

    Long Term Results of Visual Field Progression Analysis in Open Angle Glaucoma Patients Under Treatment.

    Kocatürk T, Bekmez S, Katrancı M, et al.

    The open ophthalmology journal 2015; (9()):116-20 doi:10.2174/1874364101509010116.

    PMID: 26311586
  8. 8

    TIMP1, TIMP2, and TIMP4 are increased in aqueous humor from primary open angle glaucoma patients.

    Ashworth Briggs EL, Toh T, Eri R, et al.

    Molecular vision 2015; (21()):1162-72.

    PMID: 26539028
  9. 9

    Vascular and autonomic dysregulation in primary open-angle glaucoma.

    Pasquale LR

    Current opinion in ophthalmology 2016; (27(2)):94-101 doi:10.1097/ICU.0000000000000245.

    PMID: 26720776
  10. 10

    Update on the Prevalence, Etiology, Diagnosis, and Monitoring of Normal-Tension Glaucoma.

    Kim KE, Park KH

    Asia-Pacific journal of ophthalmology (Philadelphia, Pa.) 2016; (5(1)):23-31 doi:10.1097/APO.0000000000000177.

    PMID: 26886116
  11. 11

    Management of Primary Angle-Closure Glaucoma.

    Lai J, Choy BN, Shum JW

    Asia-Pacific journal of ophthalmology (Philadelphia, Pa.) 2016; (5(1)):59-62 doi:10.1097/APO.0000000000000180.

    PMID: 26886121
  12. 12

    The exit strategy: Pharmacological modulation of extracellular matrix production and deposition for better aqueous humor drainage.

    Pattabiraman PP, Toris CB

    European journal of pharmacology 2016; (787()):32-42.

    PMID: 27112663
  13. 13

    Smad-independent TGF-β2 signaling pathways in human trabecular meshwork cells.

    Pervan CL

    Experimental eye research 2017; (158()):137-145 doi:10.1016/j.exer.2016.07.012.

    PMID: 27453344
  14. 14

    Life under pressure: The role of ocular cribriform cells in preventing glaucoma.

    Paula JS, O'Brien C, Stamer WD

    Experimental eye research 2016; (151()):150-9.

    PMID: 27567558
  15. 15

    Patterns of Retinal Nerve Fiber Layer Loss in Different Subtypes of Open Angle Glaucoma Using Spectral Domain Optical Coherence Tomography.

    Baniasadi N, Paschalis EI, Haghzadeh M, et al.

    Journal of glaucoma 2016; (25(10)):865-872 doi:10.1097/IJG.0000000000000534.

    PMID: 27599175
  16. 16

    Primary open-angle glaucoma.

    Weinreb RN, Leung CK, Crowston JG, et al.

    Nature reviews. Disease primers 2016; (2()):16067 doi:10.1038/nrdp.2016.67.

    PMID: 27654570
  17. 17

    Incidence of short-term complications and associated factors after primary trabeculectomy in Chiang Mai University Hospital.

    Leeungurasatien T, Khunsongkiet P, Pathanapitoon K, Wiwatwongwana D

    Indian journal of ophthalmology 2016; (64(10)):737-742 doi:10.4103/0301-4738.195011.

    PMID: 27905335
  18. 18

    Systemic side effects of eye drops: a pharmacokinetic perspective.

    Farkouh A, Frigo P, Czejka M

    Clinical ophthalmology (Auckland, N.Z.) 2016; (10()):2433-2441 doi:10.2147/OPTH.S118409.

    PMID: 27994437
  19. 19

    A Review of Selective Laser Trabeculoplasty: Recent Findings and Current Perspectives.

    Zhou Y, Aref AA

    Ophthalmology and therapy 2017; (6(1)):19-32 doi:10.1007/s40123-017-0082-x.

    PMID: 28258400
  20. 20

    Wound Healing and Glaucoma Surgery: Modulating the Scarring Process with Conventional Antimetabolites and New Molecules.

    Holló G

    Developments in ophthalmology 2017; (59()):80-89 doi:10.1159/000458488.

    PMID: 28442689
  21. 21

    Glaucoma.

    Jonas JB, Aung T, Bourne RR, et al.

    Lancet (London, England) 2017; (390(10108)):2183-2193 doi:10.1016/S0140-6736(17)31469-1.

    PMID: 28577860
  22. 22

    Social, health and ocular factors associated with primary open-angle glaucoma amongst Chinese Singaporeans.

    Chiam N, Baskaran M, Li Z, et al.

    Clinical & experimental ophthalmology 2018; (46(1)):25-34 doi:10.1111/ceo.13008.

    PMID: 28621876
  23. 23

    Impaired angiopoietin/Tie2 signaling compromises Schlemm's canal integrity and induces glaucoma.

    Kim J, Park DY, Bae H, et al.

    The Journal of clinical investigation 2017; (127(10)):3877-3896.

    PMID: 28920924
  24. 24

    Assessment of eye drop instillation technique in glaucoma patients.

    Gomes BF, Paredes AF, Madeira N, et al.

    Arquivos brasileiros de oftalmologia 2017; (80(4)):238-241 doi:10.5935/0004-2749.20170058.

    PMID: 28954024
  25. 25

    Pathophysiology of primary open-angle glaucoma from a neuroinflammatory and neurotoxicity perspective: a review of the literature.

    Evangelho K, Mogilevskaya M, Losada-Barragan M, Vargas-Sanchez JK

    International ophthalmology 2019; (39(1)):259-271 doi:10.1007/s10792-017-0795-9.

    PMID: 29290065
  26. 26

    A Prospective Longitudinal Study to Investigate Corneal Hysteresis as a Risk Factor for Predicting Development of Glaucoma.

    Susanna CN, Diniz-Filho A, Daga FB, et al.

    American journal of ophthalmology 2018; (187()):148-152 doi:10.1016/j.ajo.2017.12.018.

    PMID: 29305310
  27. 27

    Diagnostic ability of macular ganglion cell-inner plexiform layer thickness in glaucoma suspects.

    Xu X, Xiao H, Guo X, et al.

    Medicine 2017; (96(51)):e9182 doi:10.1097/MD.0000000000009182.

    PMID: 29390457
  28. 28

    Integrating Macular Ganglion Cell Inner Plexiform Layer and Parapapillary Retinal Nerve Fiber Layer Measurements to Detect Glaucoma Progression.

    Hou HW, Lin C, Leung CK

    Ophthalmology 2018; (125(6)):822-831 doi:10.1016/j.ophtha.2017.12.027.

    PMID: 29433852
  29. 29

    The thick and thin of the central corneal thickness in glaucoma.

    Belovay GW, Goldberg I

    Eye (London, England) 2018; (32(5)):915-923 doi:10.1038/s41433-018-0033-3.

    PMID: 29445115
  30. 30

    Old and new in exploring the anterior chamber angle.

    Raluca M, Mircea F, Andrei F, et al.

    Romanian journal of ophthalmology 2015; (59(4)):208-216.

    PMID: 29450309
  31. 31

    Anterior-Segment Optical Coherence Tomography for Predicting Postoperative Outcomes After Trabeculectomy.

    Kokubun T, Tsuda S, Kunikata H, et al.

    Current eye research 2018; (43(6)):762-770 doi:10.1080/02713683.2018.1446535.

    PMID: 29513109
  32. 32

    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
  33. 33

    Discovery, characterization and clinical utility of prostaglandin agonists for the treatment of glaucoma.

    Klimko PG, Sharif NA

    British journal of pharmacology 2019; (176(8)):1051-1058 doi:10.1111/bph.14327.

    PMID: 29665040
  34. 34

    Patterns of Progressive Ganglion Cell-Inner Plexiform Layer Thinning in Glaucoma Detected by OCT.

    Shin JW, Sung KR, Park SW

    Ophthalmology 2018; (125(10)):1515-1525 doi:10.1016/j.ophtha.2018.03.052.

    PMID: 29705057
  35. 35

    Systematic Literature Review of Clinical and Economic Outcomes of Micro-Invasive Glaucoma Surgery (MIGS) in Primary Open-Angle Glaucoma.

    Agrawal P, Bradshaw SE

    Ophthalmology and therapy 2018; (7(1)):49-73 doi:10.1007/s40123-018-0131-0.

    PMID: 29725860
  36. 36

    Visual Subfield Progression in Glaucoma Subtypes.

    Su WW, Hsieh SS, Cheng ST, et al.

    Journal of ophthalmology 2018; (2018()):7864219 doi:10.1155/2018/7864219.

    PMID: 29750123
  37. 37

    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
  38. 38

    Objective ocular surface tolerance in patients with glaucoma treated with topical preserved or unpreserved prostaglandin analogues.

    El Ameen A, Vandermeer G, Khanna RK, Pisella PJ

    European journal of ophthalmology 2019; (29(6)):645-653 doi:10.1177/1120672118805877.

    PMID: 30301370
  39. 39

    21st century glaucoma care.

    Quigley HA

    Eye (London, England) 2019; (33(2)):254-260 doi:10.1038/s41433-018-0227-8.

    PMID: 30305707
  40. 40

    Reading Ability in Primary Open-angle Glaucoma: Evaluation with Radner Reading Charts.

    Rolle T, Dallorto L, Cafasso R, et al.

    Optometry and vision science : official publication of the American Academy of Optometry 2019; (96(1)):55-61 doi:10.1097/OPX.0000000000001319.

    PMID: 30570594
  41. 41

    Bleb Morphology After Mitomycin-C Augmented Trabeculectomy: Comparison Between Clinical Evaluation and Anterior Segment Optical Coherence Tomography.

    Waibel S, Spoerl E, Furashova O, et al.

    Journal of glaucoma 2019; (28(5)):447-451 doi:10.1097/IJG.0000000000001206.

    PMID: 30720575
  42. 42

    The clinical features in patients with newly diagnosed pseudoexfoliative glaucoma in Serbia.

    Maric VD, Grgurevic AD, Cirkovic AM, et al.

    European journal of ophthalmology 2020; (30(3)):513-524 doi:10.1177/1120672119831532.

    PMID: 30808180
  43. 43

    Selective laser trabeculoplasty versus eye drops for first-line treatment of ocular hypertension and glaucoma (LiGHT): a multicentre randomised controlled trial.

    Gazzard G, Konstantakopoulou E, Garway-Heath D, et al.

    Lancet (London, England) 2019; (393(10180)):1505-1516 doi:10.1016/S0140-6736(18)32213-X.

    PMID: 30862377
  44. 44

    West Indies Glaucoma Laser Study (WIGLS) 3. Anterior Chamber Inflammation Following Selective Laser Trabeculoplasty in Afro-Caribbeans with Open-angle Glaucoma.

    Realini T, Shillingford-Ricketts H, Burt D, Balasubramani GK

    Journal of glaucoma 2019; (28(7)):622-625 doi:10.1097/IJG.0000000000001250.

    PMID: 30921277
  45. 45

    A Prospective Randomized Trial Comparing Hydrus and iStent Microinvasive Glaucoma Surgery Implants for Standalone Treatment of Open-Angle Glaucoma: The COMPARE Study.

    Ahmed IIK, Fea A, Au L, et al.

    Ophthalmology 2020; (127(1)):52-61 doi:10.1016/j.ophtha.2019.04.034.

    PMID: 31034856
  46. 46

    Impact of acute intraocular pressure elevation on the visual acuity of non-human primates.

    Li M, Yuan N, Chen X, et al.

    EBioMedicine 2019; (44()):554-562 doi:10.1016/j.ebiom.2019.05.059.

    PMID: 31178426
  47. 47

    Mendelian genes in primary open angle glaucoma.

    Sears NC, Boese EA, Miller MA, Fingert JH

    Experimental eye research 2019; (186()):107702 doi:10.1016/j.exer.2019.107702.

    PMID: 31238079
  48. 48

    Corneal Biomechanics and Visual Field Progression in Eyes with Seemingly Well-Controlled Intraocular Pressure.

    Susanna BN, Ogata NG, Jammal AA, et al.

    Ophthalmology 2019; (126(12)):1640-1646 doi:10.1016/j.ophtha.2019.07.023.

    PMID: 31519385
  49. 49

    Treatment choices for newly diagnosed primary open angle and ocular hypertension patients.

    Garg A, Gazzard G

    Eye (London, England) 2020; (34(1)):60-71 doi:10.1038/s41433-019-0633-6.

    PMID: 31685971
  50. 50

    Association of Genetic Variants With Primary Open-Angle Glaucoma Among Individuals With African Ancestry.

    , Hauser MA, Allingham RR, et al.

    JAMA 2019; (322(17)):1682-1691 doi:10.1001/jama.2019.16161.

    PMID: 31688885
  51. 51

    Advanced glaucoma at diagnosis: current perspectives.

    Kastner A, King AJ

    Eye (London, England) 2020; (34(1)):116-128 doi:10.1038/s41433-019-0637-2.

    PMID: 31740802
  52. 52

    Efficacy of Repeat Selective Laser Trabeculoplasty in Medication-Naive Open-Angle Glaucoma and Ocular Hypertension during the LiGHT Trial.

    Garg A, Vickerstaff V, Nathwani N, et al.

    Ophthalmology 2020; (127(4)):467-476 doi:10.1016/j.ophtha.2019.10.023.

    PMID: 32005561
  53. 53

    [Influence of treatment adherence on the progression of primary open-angle glaucoma in clinical setting].

    Neroev VV, Zolotarev AV, Karlova EV, et al.

    Vestnik oftalmologii 2019; (135(6)):42-51 doi:10.17116/oftalma201913506142.

    PMID: 32015307
  54. 54

    The Diagnosis and Treatment of Glaucoma.

    Schuster AK, Erb C, Hoffmann EM, et al.

    Deutsches Arzteblatt international 2020; (117(13)):225-234.

    PMID: 32343668
  55. 55

    Excisional goniotomy vs trabecular microbypass stent implantation: a prospective randomized clinical trial in eyes with mild to moderate open-angle glaucoma.

    Falkenberry S, Singh IP, Crane CJ, et al.

    Journal of cataract and refractive surgery 2020; (46(8)):1165-1171 doi:10.1097/j.jcrs.0000000000000229.

    PMID: 32358417
  56. 56

    Functional, structural, and molecular identification of lymphatic outflow from subconjunctival blebs.

    Akiyama G, Saraswathy S, Bogarin T, et al.

    Experimental eye research 2020; (196()):108049 doi:10.1016/j.exer.2020.108049.

    PMID: 32387381
  57. 57

    Clinical practice preferences for glaucoma surgery in Japan: a survey of Japan Glaucoma Society specialists.

    Iwasaki K, Arimura S, Takamura Y, Inatani M

    Japanese journal of ophthalmology 2020; (64(4)):385-391 doi:10.1007/s10384-020-00749-w.

    PMID: 32474840
  58. 58

    [The trabecular meshwork: Structure, function and clinical implications. A review of the littérature (French translation of the article)].

    Buffault J, Labbé A, Hamard P, et al.

    Journal francais d'ophtalmologie 2020; (43(8)):779-793 doi:10.1016/j.jfo.2020.04.022.

    PMID: 32807552
  59. 59

    Surgical Management of Pseudoexfoliative Glaucoma: A Review of Current Clinical Considerations and Surgical Outcomes.

    Gillmann K, Meduri E, Niegowski LJ, Mermoud A

    Journal of glaucoma 2021; (30(3)):e32-e39 doi:10.1097/IJG.0000000000001724.

    PMID: 33137018
  60. 60

    Normal tension glaucoma in Asia: Epidemiology, pathogenesis, diagnosis, and management.

    Chen MJ

    Taiwan journal of ophthalmology 2020; (10(4)):250-254 doi:10.4103/tjo.tjo_30_20.

    PMID: 33437596
  61. 61

    What Do We Really Know about the Effectiveness of Glaucoma Interventions?: An Overview of Systematic Reviews.

    Qureshi R, Azuara-Blanco A, Michelessi M, et al.

    Ophthalmology. Glaucoma 2021; (4(5)):454-462 doi:10.1016/j.ogla.2021.01.007.

    PMID: 33571689
  62. 62

    Is Mental Stress the Primary Cause of Glaucoma?

    Sabel BA, Lehnigk L

    Klinische Monatsblatter fur Augenheilkunde 2021; (238(2)):132-145 doi:10.1055/a-1303-8025.

    PMID: 33578436
  63. 63

    Intraobserver and interobserver agreement among anterior chamber angle evaluations using automated 360-degree gonio-photos.

    Matsuo M, Mizoue S, Nitta K, et al.

    PloS one 2021; (16(5)):e0251249 doi:10.1371/journal.pone.0251249.

    PMID: 33956906
  64. 64

    The lysophosphatidic acid axis in fibrosis: Implications for glaucoma.

    O'Regan A, O'Brien CJ, Eivers SB

    Wound repair and regeneration : official publication of the Wound Healing Society [and] the European Tissue Repair Society 2021; (29(4)):613-626 doi:10.1111/wrr.12929.

    PMID: 34009724
  65. 65

    Minimally Invasive Glaucoma Surgical Techniques for Open-Angle Glaucoma: An Overview of Cochrane Systematic Reviews and Network Meta-analysis.

    Bicket AK, Le JT, Azuara-Blanco A, et al.

    JAMA ophthalmology 2021; (139(9)):983-989 doi:10.1001/jamaophthalmol.2021.2351.

    PMID: 34264292
  66. 66

    Population screening for glaucoma in UK: current recommendations and future directions.

    Hamid S, Desai P, Hysi P, et al.

    Eye (London, England) 2022; (36(3)):504-509 doi:10.1038/s41433-021-01687-8.

    PMID: 34345031
  67. 67

    Selective Laser Trabeculoplasty in the Treatment of Ocular Hypertension and Open-Angle Glaucoma: Clinical Review.

    Zgryźniak A, Przeździecka-Dołyk J, Szaliński M, Turno-Kręcicka A

    Journal of clinical medicine 2021; (10(15)) doi:10.3390/jcm10153307.

    PMID: 34362091
  68. 68

    Etiological spectrum of irreversible blindness in Kashmir in North India.

    Kaushik M, Nawaz S, Mufti H, Qureshi TS

    Indian journal of ophthalmology 2021; (69(10)):2630-2636 doi:10.4103/ijo.IJO_3818_20.

    PMID: 34571602
  69. 69

    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.

    PMID: 34645961
  70. 70

    Measures of disease activity in glaucoma.

    Wu Y, Szymanska M, Hu Y, et al.

    Biosensors & bioelectronics 2022; (196()):113700 doi:10.1016/j.bios.2021.113700.

    PMID: 34653715
  71. 71

    Assessment of eye drop instillation techniques among patients with primary open angle glaucoma in a Nigerian tertiary hospital.

    Sam-Oyerinde OA, Onyekwelu OM, Musa KO, et al.

    International ophthalmology 2022; (42(4)):1031-1040 doi:10.1007/s10792-021-02085-5.

    PMID: 34655378
  72. 72

    Topical Medication Adherence and Visual Field Progression in Open-angle Glaucoma: Analysis of a Large US Health Care System.

    Shu YH, Wu J, Luong T, et al.

    Journal of glaucoma 2021; (30(12)):1047-1055 doi:10.1097/IJG.0000000000001943.

    PMID: 34669680
  73. 73

    Evaluation of depth perception and association of severity in Glaucoma patients and suspects.

    Adhikari PG, Thapa M, Dahal M

    BMC ophthalmology 2021; (21(1)):432 doi:10.1186/s12886-021-02198-6.

    PMID: 34911486
  74. 74

    Pathogenesis of glaucoma: Extracellular matrix dysfunction in the trabecular meshwork-A review.

    Keller KE, Peters DM

    Clinical & experimental ophthalmology 2022; (50(2)):163-182 doi:10.1111/ceo.14027.

    PMID: 35037377
  75. 75

    Validation of the SITA faster strategy for the management of glaucoma.

    Rodríguez-Agirretxe I, Loizate E, Astorkiza B, et al.

    International ophthalmology 2022; (42(8)):2347-2354 doi:10.1007/s10792-022-02232-6.

    PMID: 35072855
  76. 76

    Repeat Selective Laser Trabeculoplasty for Glaucoma Patients: A Systematic Review and Meta-analysis.

    Jang HJ, Yu B, Hodge W, Malvankar-Mehta MS

    Journal of current glaucoma practice 2021; (15(3)):117-124 doi:10.5005/jp-journals-10078-1302.

    PMID: 35173393
  77. 77

    Temporal contrast adaptation in the analysis of visual function in primary open-angle glaucoma.

    Wu Q, Xie M, Chen X, et al.

    Graefe's archive for clinical and experimental ophthalmology = Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie 2022; (260(9)):2959-2970 doi:10.1007/s00417-022-05619-4.

    PMID: 35294637
  78. 78

    Corneal Hysteresis and Rates of Neuroretinal Rim Change in Glaucoma.

    Jammal AA, Medeiros FA

    Ophthalmology. Glaucoma 2022; (5(5)):483-489 doi:10.1016/j.ogla.2022.03.006.

    PMID: 35331968
  79. 79

    The genetic basis for adult onset glaucoma: Recent advances and future directions.

    Wang Z, Wiggs JL, Aung T, et al.

    Progress in retinal and eye research 2022; (90()):101066 doi:10.1016/j.preteyeres.2022.101066.

    PMID: 35589495
  80. 80

    A Review of Selective Laser Trabeculoplasty: "The Hype Is Real".

    Sarenac T, Bečić Turkanović A, Ferme P, Gračner T

    Journal of clinical medicine 2022; (11(13)) doi:10.3390/jcm11133879.

    PMID: 35807163
  81. 81

    Opportunistic Eye Screening Among First-Degree Relatives of Glaucoma Patients at a Suburban Tertiary Center in Malaysia.

    Chelvaraj R, Hanapi MS, Mohd-Yusof SF, et al.

    Cureus 2022; (14(6)):e25772 doi:10.7759/cureus.25772.

    PMID: 35812598
  82. 82

    Postoperative Complications in the Primary Tube Versus Trabeculectomy Study During 5 Years of Follow-up.

    Gedde SJ, Feuer WJ, Lim KS, et al.

    Ophthalmology 2022; (129(12)):1357-1367 doi:10.1016/j.ophtha.2022.07.004.

    PMID: 35835336
  83. 83

    The PreserFlo MicroShunt in the Context of Minimally Invasive Glaucoma Surgery: A Narrative Review.

    Saeed E, Gołaszewska K, Dmuchowska DA, et al.

    International journal of environmental research and public health 2023; (20(4)) doi:10.3390/ijerph20042904.

    PMID: 36833599
  84. 84

    Improvement of Prostaglandin-Associated Periorbitopathy after Discontinuing Treatment.

    Abalo-Lojo JM, Ferreiro PV, Asorey MK, et al.

    Turkish journal of ophthalmology 2023; (53(1)):8-12 doi:10.4274/tjo.galenos.2022.24365.

    PMID: 36847619
  85. 85

    Early postoperative visual acuity changes after trabeculectomy and factors affecting visual acuity.

    Sato N, Kasahara M, Kono Y, et al.

    Graefe's archive for clinical and experimental ophthalmology = Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie 2023; (261(9)):2611-2623 doi:10.1007/s00417-023-06076-3.

    PMID: 37103621
  86. 86

    Retrospective Analysis of Prognostic Value of Optical Coherence Tomography Angiography for the Development of Glaucomatous Damage - One Year Follow-Up Retrospective Observational Cohort Analysis.

    Bollinger O, Gugleta K, Schmetterer L, et al.

    Klinische Monatsblatter fur Augenheilkunde 2023; (240(4)):472-477 doi:10.1055/a-1997-9328.

    PMID: 37164405
  87. 87

    A ROCK inhibitor suppresses the transforming growth factor-beta-2-induced endothelial-mesenchymal transition in Schlemm's canal endothelial cells.

    Fujimoto T, Inoue-Mochita M, Inoue T

    Scientific reports 2023; (13(1)):9655 doi:10.1038/s41598-023-36808-8.

    PMID: 37316554
  88. 88

    How latanoprost changed glaucoma management.

    Cordeiro MF, Gandolfi S, Gugleta K, et al.

    Acta ophthalmologica 2024; (102(2)):e140-e155 doi:10.1111/aos.15725.

    PMID: 37350260
  89. 89

    Increased drug concentration and repeated eye drop administration as strategies to optimize topical drug delivery: A fluorophotometric study in healthy dogs.

    Page LE, Kubai MA, Allbaugh RA, et al.

    Veterinary ophthalmology 2023; (26(4)):331-338 doi:10.1111/vop.13125.

    PMID: 37353948
  90. 90

    Efficacy and Safety Outcomes of XEN Implantation and Gonioscopy-assisted Transluminal Trabeculotomy for the Management of Advanced Open-angle Glaucoma.

    Ruparelia S, Sharif M, Shoham-Hazon N

    Journal of current glaucoma practice 2023; (17(2)):63-67 doi:10.5005/jp-journals-10078-1394.

    PMID: 37485457
  91. 91

    Optic Nerve Head Morphology is Associated with the Initial Location of Structural Progression in Early Open Angle Glaucoma.

    Park YM, Park JW, Bae HW, et al.

    Journal of glaucoma 2023; (32(11)):e145-e150 doi:10.1097/IJG.0000000000002274.

    PMID: 37523646
  92. 92

    COMfort Eye Trial (COMET) results - a non-inferiority, randomized, investigator-masked, two-parallel group, phase III clinical trial, to evaluate the efficacy and safety of a preservative free formulation of latanoprost versus a reference drug (Xalatan®) in patients with primary open-angle glaucoma (POAG) or ocular hypertension (OHT).

    Kandarakis S, Papadopoulos AP, Roussopoulos G, et al.

    Expert opinion on drug safety 2024; (23(6)):743-754 doi:10.1080/14740338.2023.2252341.

    PMID: 37674345
  93. 93

    Regional Vessel Density Reduction in the Macula and Optic Nerve Head of Patients With Pre-Perimetric Primary Open Angle Glaucoma.

    Verticchio Vercellin A, Siesky B, Antman G, et al.

    Journal of glaucoma 2023; (32(11)):930-941 doi:10.1097/IJG.0000000000002310.

    PMID: 37725789
  94. 94

    Ab-Externo MicroShunt versus Trabeculectomy in Primary Open-Angle Glaucoma: Two-Year Results from a Randomized, Multicenter Study.

    Panarelli JF, Moster MR, Garcia-Feijoo J, et al.

    Ophthalmology 2024; (131(3)):266-276 doi:10.1016/j.ophtha.2023.09.023.

    PMID: 37769852
  95. 95

    Beyond the optic nerve: Genetics, diagnosis, and promising therapies for glaucoma.

    Kaushik M, Tiwari P, Dada T, Dada R

    Gene 2024; (894()):147983 doi:10.1016/j.gene.2023.147983.

    PMID: 37952746
  96. 96

    Serine to proline mutation at position 341 of MYOC impairs trabecular meshwork function by causing autophagy deregulation.

    Yan X, Wu S, Liu Q, et al.

    Cell death discovery 2024; (10(1)):21 doi:10.1038/s41420-024-01801-1.

    PMID: 38212635
  97. 97

    Clinical Perspectives on the Use of Computer Vision in Glaucoma Screening.

    Camara J, Cunha A

    Medicina (Kaunas, Lithuania) 2024; (60(3)) doi:10.3390/medicina60030428.

    PMID: 38541154
  98. 98

    Eyedrop Instillation Techniques, Difficulties, and Currently Available Solutions: A Literature Review.

    Dadak R, Hatamnejad A, Patil NS, et al.

    Journal of current ophthalmology 2023; (35(3)):226-230 doi:10.4103/joco.joco_308_22.

    PMID: 38681691
  99. 99

    Proteomic and Cytokine Profiling in Plasma from Patients with Normal-Tension Glaucoma and Ocular Hypertension.

    Langbøl M, Saruhanian A, Saruhanian S, et al.

    Cellular and molecular neurobiology 2024; (44(1)):59 doi:10.1007/s10571-024-01492-3.

    PMID: 39150567
  100. 100

    Global incidence and risk factors for glaucoma: A systematic review and meta-analysis of prospective studies.

    Shan S, Wu J, Cao J, et al.

    Journal of global health 2024; (14()):04252 doi:10.7189/jogh.14.04252.

    PMID: 39513294
  101. 101

    Risk of depression in glaucoma patients with vision impairment: A nationwide cohort study.

    Wang SM, Jung Y, Han K, et al.

    Heliyon 2025; (11(1)):e40617 doi:10.1016/j.heliyon.2024.e40617.

    PMID: 39758387
  102. 102

    Impaired axonal transport contributes to neurodegeneration in a Cre-inducible mouse model of myocilin-associated glaucoma.

    Kaipa BR, Kasetti R, Sundaresan Y, et al.

    JCI insight 2025; (10(5)).

    PMID: 39836483
  103. 103

    Mean total macular volume measurement using optical coherence tomography in already diagnosed primary open angle glaucoma patients.

    Ahmad HM, Tahir MY, Chaudhary MA, Khan R

    Pakistan journal of medical sciences 2025; (41(3)):736-739 doi:10.12669/pjms.41.3.10102.

    PMID: 40103876
  104. 104

    Protein misfolding and mitochondrial dysfunction in glaucoma.

    Venkatesan A, Bernstein AM

    Frontiers in cell and developmental biology 2025; (13()):1595121 doi:10.3389/fcell.2025.1595121.

    PMID: 40385286
  105. 105

    Glaucoma Surgery: From the Tried and True to the Novel and New.

    Gedde SJ, Herndon LW

    Ophthalmology. Glaucoma 2025; (8(5S)):S49-S57 doi:10.1016/j.ogla.2025.06.009.

    PMID: 40742348
  106. 106

    Central Corneal Thickness and Intraocular Pressure Measured with Goldmann Applanation Tonometer among Patients with Normal Intraocular Pressure.

    Singh P, Karmacharya S, Rizyal A

    Journal of Nepal Health Research Council 2025; (23(1)):94-100 doi:10.33314/jnhrc.v23i01.5323.

    PMID: 40776516
  107. 107

    Molecular Portraits of Aqueous Humor in Primary and Pseudoexfoliative Open-Angle Glaucoma.

    Shebardina NG, Petrov SY, Iomdina EN, et al.

    Journal of proteome research 2026; (25(3)):1700-1713 doi:10.1021/acs.jproteome.5c00982.

    PMID: 41665634
  108. 108

    Should Schlemm Canal-Based MIGS Be Combined with Cataract Surgery in Patients Receiving Topical Glaucoma Therapy? A Cataract Surgeon-Oriented Review.

    Nakagawa S, Kaburaki T, Ishii K

    Journal of clinical medicine 2026; (15(14)) doi:10.3390/jcm15145503.

    PMID: 42513417