Detection of psychophysical and structural injury in eyes with glaucomatous optic neuropathy and normal standard automated perimetry.
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Summary
Eyes with GON and normal results of SAP have significantly greater structural and psychophysical abnormalities than do normal eyes evaluated by means of OCT, GDx-VCC, SWAP, and FDT.
- Type
- article
- Published
- 2006-02-01
- Cited by
- 46
- References
- 52
- Access
- Open access
- OpenAlex
- https://openalex.org/W16476885
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9550297
Keywords
Philosophy
References
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- Macular thickness changes in glaucomatous optic neuropathy detected using optical coherence tomography.
- Identifying early glaucoma with optical coherence tomography.
- Variability components of standard automated perimetry and frequency-doubling technology perimetry.
- Comparison of optic nerve imaging methods to distinguish normal eyes from those with glaucoma.
- Fundoscopy of nerve fiber layer defects in glaucoma.
- Heidelberg retina tomography and optical coherence tomography in normal, ocular-hypertensive, and glaucomatous eyes.
- Assessment of optic disc anatomy and nerve fiber layer thickness in ocular hypertensive subjects with normal short-wavelength automated perimetry.
- Corneal thickness measurements and visual function abnormalities in ocular hypertensive patients.
- Detection of early visual field loss in glaucoma using frequency-doubling perimetry and short-wavelength automated perimetry.
- Short-wavelength automated perimetry: it's role in the clinic and for understanding ganglion cell function.
- Asymmetries in the normal short-wavelength visual field: implications for short-wavelength automated perimetry.
- Psychophysical evidence for a selective loss of M ganglion cells in glaucoma.
- The retinal nerve fiber layer thickness in ocular hypertensive, normal, and glaucomatous eyes with optical coherence tomography.
- Frequency doubling technology perimetry abnormalities as predictors of glaucomatous visual field loss.
- Frequency doubling technology perimetry for detection of glaucomatous visual field loss.
Cited by
- Blue‐on‐yellow perimetry and optical coherence tomography in patients with preperimetric glaucoma
- Determining Progression in Glaucoma An overview of current methods and difficulties and a look at the future.
- Short-wavelength automated perimetry and frequency-doubling technology perimetry in glaucoma.
- Screening for Glaucoma: Comparative Effectiveness
- Potential of Stratus Optical Coherence Tomography for Detecting Early Glaucoma in Perimetrically Normal Eyes of Open-angle Glaucoma Patients With Unilateral Visual Field Loss
- Retinal Nerve Fiber Layer Thickness Analysis in Early Glaucoma
- Comparison of Total Deviation of Standard Automated Perimetry and Matrix FDT in Preperimetric Glaucoma Patients
- Optimizing the Use of Frequency Doubling Technology Perimetry in Community Vision Screenings
- Frequency doubling technique perimetry and spectral domain optical coherence tomography in patients with early glaucoma
- Concordance of retinal nerve fiber layer defects between fellow eyes of glaucoma patients measured by optical coherence tomography.
- Correlation between blue-on-yellow perimetry and scanning laser polarimetry with variable corneal compensation measurements in primary open-angle glaucoma
- First-Visit Diagnosis of Preperimetric Glaucoma
- Assessment of visual function in glaucoma: a report by the American Academy of Ophthalmology.
- Discordance between structure and function in glaucoma: Possible anatomical explanations.
- Detectability of Glaucomatous Changes Using SAP, FDT, Flicker Perimetry, and OCT
- [Logistic regression analysis in the combination of diagnostic methods in glaucoma].
- Quantifying Retinal Nerve Fiber Layer Loss in Glaucoma Using a Model of Unilateral Hypertensive Pseudoexfoliation Syndrome
- Frequency doubling perimetry and short-wavelength automated perimetry to detect early glaucoma.
- Scanning laser polarimetry with variable and enhanced corneal compensation in normal and glaucomatous eyes.
- Detection of Early Glaucoma With Optical Coherence Tomography (StratusOCT)
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