Literature DB >> 24595390

Variation of the axial location of Bruch's membrane opening with age, choroidal thickness, and race.

John Johnstone1, Massimo Fazio, Kulawan Rojananuangnit, Brandon Smith, Mark Clark, Crawford Downs, Cynthia Owsley, Michael J A Girard, Jean Martial Mari, Christopher A Girkin.   

Abstract

PURPOSE: This study explores variation in the axial location of Bruch's membrane opening (BMO) to determine if this reference plane varies with age and race.
METHODS: There were 168 spectral-domain optical coherence tomography (SDOCT) optic nerve head volumes that were obtained from healthy subjects and manually delineated within 24 axial slices to develop point clouds for Bruch's membrane and anterior scleral surfaces. A BMO-independent reference plane was generated based on the peripapillary sclera to measure BMO position. General estimating equations were used to determine the relationship of the axial position of BMO (BMO height) with choroidal thickness, age, and race (African Descent [AD] versus European Descent [ED]) controlling for variations in axial length.
RESULTS: The peripapillary choroid was thinner with increasing axial length (-14.9 μm/mm, P = 0.0096), advancing age (-1.1 μm/y, P = 0.00091), and in the ED group (20.2 μm, P = 0.019) in a multivariable model. Choroidal thickness was also strongly related to BMO height (P < 0.00001) independent of all covariates. Bruch's membrane opening position was more posterior relative to the sclera in older subjects (1.3 μm/y, P = 0.00017), independent of axial length and race. However, when choroidal thickness was included in the model, this association was lost (P = 0.225). There was no significant difference in BMO height between racial groups after adjustment for age and axial length.
CONCLUSIONS: Bruch's membrane opening is more posteriorly located in older individuals. These differences are largely due to differences in choroidal thickness and suggest that BMO migrates posteriorly with age due to age-related choroidal thinning. However, additional studies in longitudinal datasets are needed to validate these findings.

Entities:  

Keywords:  choriocapillaris; optic nerve head; optical coherence tomography

Mesh:

Year:  2014        PMID: 24595390      PMCID: PMC3973189          DOI: 10.1167/iovs.13-12937

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


  21 in total

1.  3-D histomorphometry of the normal and early glaucomatous monkey optic nerve head: prelaminar neural tissues and cupping.

Authors:  Hongli Yang; J Crawford Downs; Anthony Bellezza; Hilary Thompson; Claude F Burgoyne
Journal:  Invest Ophthalmol Vis Sci       Date:  2007-11       Impact factor: 4.799

2.  3-D histomorphometry of the normal and early glaucomatous monkey optic nerve head: lamina cribrosa and peripapillary scleral position and thickness.

Authors:  Hongli Yang; J Crawford Downs; Christopher Girkin; Lisandro Sakata; Anthony Bellezza; Hilary Thompson; Claude F Burgoyne
Journal:  Invest Ophthalmol Vis Sci       Date:  2007-10       Impact factor: 4.799

3.  Comparison of clinical and three-dimensional histomorphometric optic disc margin anatomy.

Authors:  Nicholas G Strouthidis; Hongli Yang; J Crawford Downs; Claude F Burgoyne
Journal:  Invest Ophthalmol Vis Sci       Date:  2009-01-10       Impact factor: 4.799

4.  The region of largest β-zone parapapillary atrophy area predicts the location of most rapid visual field progression.

Authors:  Christopher C Teng; Carlos Gustavo De Moraes; Tiago S Prata; Craig A Liebmann; Celso Tello; Robert Ritch; Jeffrey M Liebmann
Journal:  Ophthalmology       Date:  2011-09-01       Impact factor: 12.079

5.  Shadow removal and contrast enhancement in optical coherence tomography images of the human optic nerve head.

Authors:  Michaël J A Girard; Nicholas G Strouthidis; C Ross Ethier; Jean Martial Mari
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-09-29       Impact factor: 4.799

6.  Visualization of the lamina cribrosa using enhanced depth imaging spectral-domain optical coherence tomography.

Authors:  Eun Ji Lee; Tae-Woo Kim; Robert N Weinreb; Ki Ho Park; Seok Hwan Kim; Dong Myung Kim
Journal:  Am J Ophthalmol       Date:  2011-05-12       Impact factor: 5.258

7.  Deformation of the rodent optic nerve head and peripapillary structures during acute intraocular pressure elevation.

Authors:  Brad Fortune; Tiffany E Choe; Juan Reynaud; Christine Hardin; Grant A Cull; Claude F Burgoyne; Lin Wang
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-08-22       Impact factor: 4.799

8.  Parapapillary chorioretinal atrophy in normal and glaucoma eyes. II. Correlations.

Authors:  J B Jonas; G O Naumann
Journal:  Invest Ophthalmol Vis Sci       Date:  1989-05       Impact factor: 4.799

9.  The African Descent and Glaucoma Evaluation Study (ADAGES): design and baseline data.

Authors:  Pamela A Sample; Christopher A Girkin; Linda M Zangwill; Sonia Jain; Lyne Racette; Lida M Becerra; Robert N Weinreb; Felipe A Medeiros; M Roy Wilson; Julio De León-Ortega; Celso Tello; Christopher Bowd; Jeffrey M Liebmann
Journal:  Arch Ophthalmol       Date:  2009-09

10.  Peripapillary choroidal thickness in healthy Chinese subjects.

Authors:  Wenbin Huang; Wei Wang; Minwen Zhou; Shida Chen; Xinbo Gao; Qian Fan; Xiaoyan Ding; Xiulan Zhang
Journal:  BMC Ophthalmol       Date:  2013-06-10       Impact factor: 2.209

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  32 in total

1.  The effects of graded intraocular pressure challenge on the optic nerve head.

Authors:  Nimesh Patel; Faith McAllister; Laura Pardon; Ronald Harwerth
Journal:  Exp Eye Res       Date:  2018-02-01       Impact factor: 3.467

2.  Association of Functional Loss With the Biomechanical Response of the Optic Nerve Head to Acute Transient Intraocular Pressure Elevations.

Authors:  Tin A Tun; Eray Atalay; Mani Baskaran; Monisha E Nongpiur; Hla M Htoon; David Goh; Ching-Yu Cheng; Shamira A Perera; Tin Aung; Nicholas G Strouthidis; Michaël J A Girard
Journal:  JAMA Ophthalmol       Date:  2018-02-01       Impact factor: 7.389

3.  Variation of laminar depth in normal eyes with age and race.

Authors:  Lindsay A Rhodes; Carrie Huisingh; John Johnstone; Massimo Fazio; Brandon Smith; Mark Clark; J Crawford Downs; Cynthia Owsley; Michael J A Girard; Jean Martial Mari; Christopher Girkin
Journal:  Invest Ophthalmol Vis Sci       Date:  2014-11-20       Impact factor: 4.799

4.  RefMoB, a Reflectivity Feature Model-Based Automated Method for Measuring Four Outer Retinal Hyperreflective Bands in Optical Coherence Tomography.

Authors:  Douglas H Ross; Mark E Clark; Pooja Godara; Carrie Huisingh; Gerald McGwin; Cynthia Owsley; Katie M Litts; Richard F Spaide; Kenneth R Sloan; Christine A Curcio
Journal:  Invest Ophthalmol Vis Sci       Date:  2015-07       Impact factor: 4.799

5.  Relationship of Corneal Hysteresis and Anterior Lamina Cribrosa Displacement in Glaucoma.

Authors:  Brandon J Wong; Sasan Moghimi; Linda M Zangwill; Mark Christopher; Akram Belghith; Eren Ekici; Christopher Bowd; Massimo A Fazio; Christopher A Girkin; Robert N Weinreb
Journal:  Am J Ophthalmol       Date:  2019-11-23       Impact factor: 5.258

6.  OCT-Detected Optic Nerve Head Neural Canal Direction, Obliqueness, and Minimum Cross-Sectional Area in Healthy Eyes.

Authors:  Seungwoo Hong; Hongli Yang; Stuart K Gardiner; Haomin Luo; Christy Hardin; Glen P Sharpe; Joseph Caprioli; Shaban Demirel; Christopher A Girkin; Jeffrey M Liebmann; Christian Y Mardin; Harry A Quigley; Alexander F Scheuerle; Brad Fortune; Balwantray C Chauhan; Claude F Burgoyne
Journal:  Am J Ophthalmol       Date:  2019-05-13       Impact factor: 5.258

7.  Crowded optic nerve head evaluation with optical coherence tomography in anterior ischemic optic neuropathy.

Authors:  S Moghimi; M Afzali; M Akbari; K B Ebrahimi; A Khodabande; A R Yazdani-Abyaneh; S N H Ghafouri; P Coh; S Okhravi; M A Fard
Journal:  Eye (Lond)       Date:  2017-04-07       Impact factor: 3.775

8.  Measuring Mean Cup Depth in the Optic Nerve Head.

Authors:  John K Johnstone; Lindsay Rhodes; Massimo Fazio; Brandon Smith; Lan Wang; J Crawford Downs; Cynthia Owsley; Christopher A Girkin
Journal:  Comput Aided Des Appl       Date:  2016-03-01

9.  The Connective Tissue Components of Optic Nerve Head Cupping in Monkey Experimental Glaucoma Part 1: Global Change.

Authors:  Hongli Yang; Ruojin Ren; Howard Lockwood; Galen Williams; Vincent Libertiaux; Crawford Downs; Stuart K Gardiner; Claude F Burgoyne
Journal:  Invest Ophthalmol Vis Sci       Date:  2015-12       Impact factor: 4.799

Review 10.  Detecting Structural Progression in Glaucoma with Optical Coherence Tomography.

Authors:  Andrew J Tatham; Felipe A Medeiros
Journal:  Ophthalmology       Date:  2017-12       Impact factor: 12.079

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