Literature DB >> 22262083

Glaucoma versus red disease: imaging and glaucoma diagnosis.

Gabriel T Chong1, Richard K Lee.   

Abstract

PURPOSE OF REVIEW: The use of ophthalmic imaging for documentation and diagnosis of ocular disease is rising dramatically. Optical coherence tomography (OCT), confocal scanning laser tomography (CSLT), scanning laser polarimetry (SLP) and photographic imaging of the optic nerve head (ONH) are currently used to document baseline characteristics of the ONH and for diagnosing glaucoma and glaucoma progression secondary to loss of retinal nerve fiber layer (RNFL). Imaging modalities typically provide information on ONH and RNFL characteristics which are outside of the normal (relative to normative databases) in red lettering or boxes, whereas ONH and RNFL characteristics within the normal range are presented in green. RECENT
FINDINGS: As imaging modalities have become more sophisticated and are validated in research studies, clinicians have come to rely upon data from these imaging devices to aid in differentiating between normal and glaucomatous states of the ONH and RNFL - typically by examining if the data are green or red suggesting normal or abnormal. However, normative databases can sometimes be flawed relative to atypical ONH or RNFL morphologies and imaging can provide artifacts which do not represent true ocular disease but secondary to limitations of imaging technology.
SUMMARY: Ophthalmic imaging is an important adjunct to clinical diagnosis but the results from imaging devices need to be assessed critically relative to artifacts of imaging and the limitations of the technology and its normative databases.

Entities:  

Mesh:

Year:  2012        PMID: 22262083     DOI: 10.1097/ICU.0b013e32834ff431

Source DB:  PubMed          Journal:  Curr Opin Ophthalmol        ISSN: 1040-8738            Impact factor:   3.761


  42 in total

1.  Peripapillary retinal nerve fibre layer thickness measurement with SD-OCT in normal and glaucomatous eyes: distribution and correlation with age.

Authors:  George Kampougeris; Dimitrios Spyropoulos; Adrianna Mitropoulou; Aggeliki Zografou; Pericles Kosmides
Journal:  Int J Ophthalmol       Date:  2013-10-18       Impact factor: 1.779

2.  Evaluation of Visual Field and Imaging Outcomes for Glaucoma Clinical Trials (An American Ophthalomological Society Thesis).

Authors:  David F Garway-Heath; Ana Quartilho; Philip Prah; David P Crabb; Qian Cheng; Haogang Zhu
Journal:  Trans Am Ophthalmol Soc       Date:  2017-08-22

3.  Critical pathway for primary open angle glaucoma diagnosis.

Authors:  Alejandro R Allocco; Julia A Ponce; Maria J Riera; Mauricio G Magurno
Journal:  Int J Ophthalmol       Date:  2017-06-18       Impact factor: 1.779

Review 4.  Parameters of ocular fundus on spectral-domain optical coherence tomography for glaucoma diagnosis.

Authors:  Yu-Lin Tao; Li-Ming Tao; Zheng-Xuan Jiang; He-Ting Liu; Kun Liang; Mo-Han Li; Xuan-Sheng Zhu; Yan-Lin Ren; Bing-Jie Cui
Journal:  Int J Ophthalmol       Date:  2017-06-18       Impact factor: 1.779

5.  Sensitivity and specificity for detecting early glaucoma in eyes with high myopia from normative database of macular ganglion cell complex thickness obtained from normal non-myopic or highly myopic Asian eyes.

Authors:  Hideo Nakanishi; Tadamichi Akagi; Masanori Hangai; Yugo Kimura; Kenji Suda; Kyoko Kawashima Kumagai; Satoshi Morooka; Hanako Ohashi Ikeda; Nagahisa Yoshimura
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2015-05-06       Impact factor: 3.117

6.  Separation and thickness measurements of superficial and deep slabs of the retinal nerve fiber layer in healthy and glaucomatous eyes.

Authors:  Luis E Vazquez; Jean-Claude Mwanza; Giacinto Triolo; Pedro Monsalve; William J Feuer; Richard K Parrish; Douglas R Anderson; Donald L Budenz
Journal:  Ophthalmol Glaucoma       Date:  2019-11-20

Review 7.  Improving our understanding, and detection, of glaucomatous damage: An approach based upon optical coherence tomography (OCT).

Authors:  Donald C Hood
Journal:  Prog Retin Eye Res       Date:  2016-12-22       Impact factor: 21.198

8.  Automated Segmentation Errors When Using Optical Coherence Tomography to Measure Retinal Nerve Fiber Layer Thickness in Glaucoma.

Authors:  Steven L Mansberger; Shivali A Menda; Brad A Fortune; Stuart K Gardiner; Shaban Demirel
Journal:  Am J Ophthalmol       Date:  2016-11-04       Impact factor: 5.258

9.  Optical Coherence Tomography in High Myopia.

Authors:  Joel S Schuman
Journal:  JAMA Ophthalmol       Date:  2016-09-01       Impact factor: 7.389

10.  Age-associated changes in the retinal nerve fiber layer and optic nerve head.

Authors:  Nimesh B Patel; Mimi Lim; Avni Gajjar; Kelsey B Evans; Ronald S Harwerth
Journal:  Invest Ophthalmol Vis Sci       Date:  2014-07-22       Impact factor: 4.799

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