Purpose: To compare the ability of Subjective assessment of optic nerve head (ONH) and retinal nerve fiber layer (RNFL) by general ophthalmologists and by a glaucoma expert with objective measurements by optical coherence tomography (Stratus OCT, Carl Zeiss Meditec Inc), confocal scanning laser ophthalmoscope (HRT III; Heidelberg Engineering, Heidelberg. Germany), and scanning laser polarimetry (GDx enhanced corneal compensation; Carl Zeiss Meditec Inc, Dublin, CA) in discriminating glaucomatous and normal eyes. Methods: Sixty-one glaucomatous and 57 normal eyes or 118 subjects Were included in the study. Three independent general ophthalmologists and I glaucoma expert evaluated ONH stereo-photographs. Receiver operating characteristic curv...
Purpose- To compare the diagnostic performance of automated imaging for glaucoma. Design- Prospectiv...
Purpose:To evaluate the ability of the sectorial optic nerve head (ONH) parameters measured by Heide...
Purpose- To compare the diagnostic performance of automated imaging for glaucoma. Design- Prospectiv...
Purpose: To compare the ability of Subjective assessment of optic nerve head (ONH) and retinal nerve...
PURPOSE: To assess agreement in cup-to-disc ratio (CDR) estimation between stereoscopic optic disc p...
PURPOSE: To explore and compare the influence of optic disc size on the diagnostic accuracy of retin...
AIMS: To determine and compare the accuracy and reproducibility of GDx variable cornea compensation ...
Item does not contain fulltextAIMS: To determine and compare the accuracy and reproducibility of GDx...
Purpose: To evaluate retinal nerve fiber layer (RNFL), optic nerve head (ONH), and macular thickness...
Purpose: To evaluate retinal nerve fiber layer (RNFL), optic nerve head (ONH), and macular thickness...
PURPOSE:To compare the diagnostic abilities of vessel density measurements of the optic nerve head (...
PURPOSE: To assess the optic nerve head (ONH) by optical coherence tomography (OCT), confocal scanni...
Purpose- To compare the diagnostic performance of automated imaging for glaucoma. Design- Prospectiv...
Purpose:To assess the diagnostic ability of optical coherence tomography (OCT) to detect retinal ner...
PURPOSE: To investigate the ability of three diagnostic tests: frequency-doubling technology (FDT), ...
Purpose- To compare the diagnostic performance of automated imaging for glaucoma. Design- Prospectiv...
Purpose:To evaluate the ability of the sectorial optic nerve head (ONH) parameters measured by Heide...
Purpose- To compare the diagnostic performance of automated imaging for glaucoma. Design- Prospectiv...
Purpose: To compare the ability of Subjective assessment of optic nerve head (ONH) and retinal nerve...
PURPOSE: To assess agreement in cup-to-disc ratio (CDR) estimation between stereoscopic optic disc p...
PURPOSE: To explore and compare the influence of optic disc size on the diagnostic accuracy of retin...
AIMS: To determine and compare the accuracy and reproducibility of GDx variable cornea compensation ...
Item does not contain fulltextAIMS: To determine and compare the accuracy and reproducibility of GDx...
Purpose: To evaluate retinal nerve fiber layer (RNFL), optic nerve head (ONH), and macular thickness...
Purpose: To evaluate retinal nerve fiber layer (RNFL), optic nerve head (ONH), and macular thickness...
PURPOSE:To compare the diagnostic abilities of vessel density measurements of the optic nerve head (...
PURPOSE: To assess the optic nerve head (ONH) by optical coherence tomography (OCT), confocal scanni...
Purpose- To compare the diagnostic performance of automated imaging for glaucoma. Design- Prospectiv...
Purpose:To assess the diagnostic ability of optical coherence tomography (OCT) to detect retinal ner...
PURPOSE: To investigate the ability of three diagnostic tests: frequency-doubling technology (FDT), ...
Purpose- To compare the diagnostic performance of automated imaging for glaucoma. Design- Prospectiv...
Purpose:To evaluate the ability of the sectorial optic nerve head (ONH) parameters measured by Heide...
Purpose- To compare the diagnostic performance of automated imaging for glaucoma. Design- Prospectiv...