Examining Tear Film Dynamics Using the Novel Tear Film Imager.


Journal

Cornea
ISSN: 1536-4798
Titre abrégé: Cornea
Pays: United States
ID NLM: 8216186

Informations de publication

Date de publication:
28 Mar 2024
Historique:
received: 15 11 2023
accepted: 04 02 2024
medline: 1 4 2024
pubmed: 1 4 2024
entrez: 1 4 2024
Statut: aheadofprint

Résumé

The purpose of this study was to examine Tear Film Imager (TFI, AdOM, Israel) generated parameters across controls and dry eye (DE) subgroups and examine the changes in TFI parameters with contact lens (CL) placement. The retrospective study (n = 48) was conducted at the Miami Veterans Hospital. Symptoms were assessed through validated questionnaires and signs of tear function by tear break-up time and Schirmer scores. Participants were grouped as 1) healthy, 2) evaporative, 3) aqueous deficient, and 4) mixed DE based on tear function. Seventeen individuals had a baseline scan and a repeat scan following CL placement. Descriptives were compared across groups and over time. The median age was 27 years, 74% self-identified as White, 45% as male, and 51% as Hispanic. Subjects in the aqueous deficiency category had lower muco-aqueous layer thickness (MALT) (2672 vs. 3084 nm) but higher lipid layer thickness (47.5 vs. 38.3 nm), lipid break-up time (4.4 vs. 2 seconds), and interblink interval (13.9 vs. 5.4 seconds) compared with the evaporative group. Subjects in the evaporative group had the highest MALT values (3084 vs. 2988, 2672, 3053 nm) compared with healthy, aqueous-deficient, and mixed groups. Symptoms were not significantly correlated with TFI parameters. CL placement significantly decreased MALT values (2869 → 2175 nm, P = 0.001). The TFI provides unique information regarding the dynamic function of the tear film not captured by clinical examination. TFI generated metrics demonstrate a thinner aqueous layer in individuals with aqueous deficiency but highlight a thicker aqueous layer in those with evaporative DE.

Identifiants

pubmed: 38557435
doi: 10.1097/ICO.0000000000003529
pii: 00003226-990000000-00531
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Subventions

Organisme : CSRD VA
ID : I01 CX002015
Pays : United States
Organisme : BLRD VA
ID : I01 BX004893
Pays : United States
Organisme : NEI NIH HHS
ID : R01EY026174
Pays : United States
Organisme : NEI NIH HHS
ID : R61EY032468
Pays : United States

Informations de copyright

Copyright © 2024 Wolters Kluwer Health, Inc. All rights reserved.

Déclaration de conflit d'intérêts

Professor Alon Harris would like to disclose that he received remuneration from AdOM, Qlaris, and Cipla for serving as a consultant, and he serves on the board of AdOM, Qlaris and SlitLed. Professor Alon Harris holds an ownership interest in AdOM, Oxymap, Qlaris, and SlitLed. All relationships listed above are pursuant to Icahn School of Medicine's policy on outside activities. If you have questions regarding paid relationships that your physician/researcher may have with industry, you are encouraged to talk with your physician/researcher, or check for industry relationships posted on individual faculty pages on our website at http://icahn.mssm.edu/. The remaining authors have no conflicts of interest to disclose.

Références

Craig JP, Nichols KK, Akpek EK, et al. TFOS DEWS II definition and classification report. Ocul Surf. 2017;15:276–283.
Wolffsohn JS, Arita R, Chalmers R, et al. TFOS DEWS II diagnostic methodology report. Ocul Surf. 2017;15:539–574.
Tian L, Qu JH, Zhang XY, et al. Repeatability and reproducibility of noninvasive keratograph 5M measurements in patients with dry eye disease. J Ophthalmol. 2016;2016:8013621.
Lee Y, Hyon JY, Jeon HS. Characteristics of dry eye patients with thick tear film lipid layers evaluated by a LipiView II interferometer. Graefes Arch Clin Exp Ophthalmol. 2021;259:1235–1241.
Masoudi S. Biochemistry of human tear film: a review. Exp Eye Res. 2022;220:109101.
Eom Y, Lee JS, Kang SY, et al. Correlation between quantitative measurements of tear film lipid layer thickness and meibomian gland loss in patients with obstructive meibomian gland dysfunction and normal controls. Am J Ophthalmol. 2013;155:1104–1110.e2.
Schaumberg DA, Nichols JJ, Papas EB, et al. The international workshop on meibomian gland dysfunction: report of the subcommittee on the epidemiology of, and associated risk factors for, MGD. Invest Ophthalmol Vis Sci. 2011;52:1994–2005.
Cohen Y, Trokel S, Arieli Y, et al. Mapping the lipid layer of the human tear film. Cornea. 2020;39:132–135.
Segev F, Geffen N, Galor A, et al. Dynamic assessment of the tear film muco-aqueous and lipid layers using a novel tear film imager (TFI). Br J Ophthalmol. 2020;104:136–141.
Chalmers RL, Begley CG, Caffery B. Validation of the 5-Item Dry Eye Questionnaire (DEQ-5): discrimination across self-assessed severity and aqueous tear deficient dry eye diagnoses. Cont Lens Anterior Eye. 2010;33:55–60.
Schiffman RM, Christianson MD, Jacobsen G, et al. Reliability and validity of the ocular surface disease Index. Arch Ophthalmol. 2000;118:615–621.
Perneger TV. What's wrong with Bonferroni adjustments. BMJ. 1998;316:1236–1238.
Arita R, Morishige N, Koh S, et al. Increased tear fluid production as a compensatory response to meibomian gland loss: a multicenter cross-sectional study. Ophthalmology. 2015;122:925–933.
Ong ES, Felix ER, Levitt RC, et al. Epidemiology of discordance between symptoms and signs of dry eye. Br J Ophthalmol. 2018;102:674–679.
Kim J, Kim JY, Seo KY, et al. Acta Ophthalmol. 2019;97:e1089–e1097.
Koh S, Ikeda C, Watanabe S, et al. Effect of non-invasive tear stability assessment on tear meniscus height. Acta Ophthalmol. 2015;93:e135–e139.
Jung JW, Park SY, Kim JS, et al. Analysis of factors associated with the tear film lipid layer thickness in normal eyes and patients with dry eye syndrome. Invest Ophthalmol Vis Sci. 2016;57:4076–4083.
Blackie CA, Solomon JD, Scaffidi RC, et al. The relationship between dry eye symptoms and lipid layer thickness. Cornea. 2009;28:789–794.
Hong J, Sun X, Wei A, et al. Cornea. 2013;32:716–721.
Sutphin JE, Ying GS, Bunya VY, et al. Correlation of measures from the OCULUS keratograph and clinical assessments of dry eye disease in the dry eye assessment and management study. Cornea. 2022;41:845–851.
Nagahara Y, Koh S, Maeda N, et al. Prominent decrease of tear meniscus height with contact lens wear and efficacy of eye drop instillation. Eye Contact Lens. 2015;41:318–322.
Glasson MJ, Stapleton F, Keay L, et al. The effect of short term contact lens wear on the tear film and ocular surface characteristics of tolerant and intolerant wearers. Cont Lens Anterior Eye. 2006;29:41–49.

Auteurs

Simran Mangwani-Mordani (S)

Surgical Services, Department of Ophthalmology, Miami Veterans Affairs Medical Center, Miami, FL.
Department of Ophthalmology, Bascom Palmer Eye Institute, University of Miami, Miami, FL.

Drew Baeza (D)

Surgical Services, Department of Ophthalmology, Miami Veterans Affairs Medical Center, Miami, FL.
Nova Southeastern University Dr. Kiran C. Patel College of Allopathic Medicine, Fort Lauderdale, FL.

Kelly Acuna (K)

Georgetown University School of Medicine, Washington, DC.

Gal Antman (G)

Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.
Department of Ophthalmology, Rabin Medical Center, Petach Tikva, Israel; and.

Alon Harris (A)

Icahn School of Medicine at Mount Sinai, New York, NY.

Anat Galor (A)

Surgical Services, Department of Ophthalmology, Miami Veterans Affairs Medical Center, Miami, FL.
Department of Ophthalmology, Bascom Palmer Eye Institute, University of Miami, Miami, FL.

Classifications MeSH