Literature DB >> 21873655

In vivo cross-sectional observation and thickness measurement of bulbar conjunctiva using optical coherence tomography.

Xingru Zhang1, Qingsong Li, Bing Liu, Huanming Zhou, Hanming Wang, Zhengyong Zhang, Minghong Xiang, Zhumei Han, Haidong Zou.   

Abstract

PURPOSE: To observe in vivo bulbar conjunctival structures, and determine the reproducibility of thickness measurements of normal human conjunctiva through optical coherence tomography (OCT) images.
METHODS: The bulbar conjunctivas of three study groups were observed: five enucleated porcine eyes with 20 um thickness aluminum foils inserted beneath conjunctival stroma; five glaucoma patients with 6-0 thread placed beneath conjunctival stroma during trabeculectomy; and 18 normal subjects. The cross-sectional conjunctival images were acquired using the scanning protocol from an optical coherence tomography device (Anterior Segment 5 Line Raster scanning protocol, Cirrus HD-OCT; Carl Zeiss Meditec, Inc., Dublin, CA). The thickness of different conjunctival layers was measured using central corneal thickness measurement software in the 18 normal subjects. Two reproducible parameters-interobserver (within-subject between-examiners) and intraobserver (within-subject between-date)-were estimated with intraclass correlation coefficients (ICC).
RESULTS: A thin hyporeflective surface layer, corresponding to the conjunctival epithelium layer, was observed. Beneath it, the conjunctival stroma appeared hyperreflective and was separated by a demarcation from the underlying progressively lower reflective Tenon's capsule. The anatomic location of the demarcation, which represents the loose connection between the conjunctival stroma and Tenon's capsule, was confirmed by inserting aluminum foil in porcine eyes, and by a 6-0 thread mark in glaucoma patients' eyes. The average conjunctival epithelium, stroma, and full thickness of the 18 normal subjects was 47.3 ± 8.4 um, 190.8 ± 47.5 um, and 238.8 ± 51.1 um, respectively. The intraobserver and interobserver intraclass correlation coefficients ranged from 0.918 to 0.985.
CONCLUSIONS: It is possible to accurately image and measure the cross-sectional structures of the bulbar conjunctival tissue with high resolution OCT.

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Year:  2011        PMID: 21873655     DOI: 10.1167/iovs.11-7749

Source DB:  PubMed          Journal:  Invest Ophthalmol Vis Sci        ISSN: 0146-0404            Impact factor:   4.799


  14 in total

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5.  Evaluation of ocular surface epithelial and stromal thicknesses in psoriasis using anterior segment optical coherence tomography.

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6.  Anterior segment spectral domain optical coherence tomography imaging of patients with anterior scleritis.

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7.  Possible role of standardized echography complementing ultrasound biomicroscopy in tumors of the anterior eye segment: a study in a series of 13 patients.

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8.  Anterior eye tissue morphology: Scleral and conjunctival thickness in children and young adults.

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Journal:  Sci Rep       Date:  2016-09-20       Impact factor: 4.379

9.  Near-infrared laser thermal conjunctivoplasty.

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Review 10.  Bulbar Conjunctival and Tenon's Layer Thickness Measurement using Optical Coherence Tomography.

Authors:  J Howlett; K Vahdani; J Rossiter
Journal:  J Curr Glaucoma Pract       Date:  2014-06-12
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