Purpose. To determine the agreement between Moorfields Regression Analysis (MRA), Glaucoma Probability Score (GPS) of Heidelberg retinal tomograph (HRT III), and peripapillary nerve fibers thickness by iVue Optical Coherence Tomography (OCT). Methods. 72 eyes with ocular hypertension or primary open angle glaucoma (POAG) were included in the study: 54 eyes had normal visual fields (VF) and 18 had VF damage. All subjects performed achromatic 30\ub0 VF by Octopus Program G1X dynamic strategy and were imaged with HRT III and iVue OCT. Sectorial and global MRA, GPS, and OCT parameters were used for the analysis. Kappa statistic was used to assess the agreement between methods. Results. A significant agreement between iVue OCT and GPS for the in...
Objectives: To investigate the correlation of visual field (VF), pattern electroretinography (PERG) ...
This study was performed to evaluate optic disc appearance, retinal nerve fiber layer (RNFL) thickne...
PURPOSE:To compare the relationship of Octopus perimeter cluster mean-defect (cluster MD) values wit...
Purpose. To determine the agreement between Moorfields Regression Analysis (MRA), Glaucoma Probabili...
Purpose: To evaluate the correlation of Humphrey visual field (VF) parameters (MD and PSD) with Heid...
Purpose: To evaluate the agreement between Moorfield Regression Analysis (MRA) and peripapillary ...
Purpose: To compare the diagnostic performance of the Heidelberg retinal tomograph (HRT) glaucoma pr...
Purpose: The objective of this study is to evaluate the diagnostic ability of retinal nerve fiber la...
Background: To correlate the findings of optical coherence tomography (OCT) evaluation of retinal n...
<b>AIM:</b>To compare and correlate optic nerve head parameters obtained byHeidelberg retina tomogra...
Background: Glaucoma is a common cause of visual impairment and blindness. The Heidelberg Retinal To...
Purpose:To evaluate the reproducibility of Glaucoma Probability Score (GPS) parameters of Heidelberg...
Background/Aims To assess the diagnostic performance of retinal nerve fibre layer (RNFL) data of opt...
<p>CON = compressive optic neuropathy; OCT = optical coherence tomography; HRT = Heidelberg Retin...
<p>CON = compressive optic neuropathy; OCT = optical coherence tomography; HRT = Heidelberg Retin...
Objectives: To investigate the correlation of visual field (VF), pattern electroretinography (PERG) ...
This study was performed to evaluate optic disc appearance, retinal nerve fiber layer (RNFL) thickne...
PURPOSE:To compare the relationship of Octopus perimeter cluster mean-defect (cluster MD) values wit...
Purpose. To determine the agreement between Moorfields Regression Analysis (MRA), Glaucoma Probabili...
Purpose: To evaluate the correlation of Humphrey visual field (VF) parameters (MD and PSD) with Heid...
Purpose: To evaluate the agreement between Moorfield Regression Analysis (MRA) and peripapillary ...
Purpose: To compare the diagnostic performance of the Heidelberg retinal tomograph (HRT) glaucoma pr...
Purpose: The objective of this study is to evaluate the diagnostic ability of retinal nerve fiber la...
Background: To correlate the findings of optical coherence tomography (OCT) evaluation of retinal n...
<b>AIM:</b>To compare and correlate optic nerve head parameters obtained byHeidelberg retina tomogra...
Background: Glaucoma is a common cause of visual impairment and blindness. The Heidelberg Retinal To...
Purpose:To evaluate the reproducibility of Glaucoma Probability Score (GPS) parameters of Heidelberg...
Background/Aims To assess the diagnostic performance of retinal nerve fibre layer (RNFL) data of opt...
<p>CON = compressive optic neuropathy; OCT = optical coherence tomography; HRT = Heidelberg Retin...
<p>CON = compressive optic neuropathy; OCT = optical coherence tomography; HRT = Heidelberg Retin...
Objectives: To investigate the correlation of visual field (VF), pattern electroretinography (PERG) ...
This study was performed to evaluate optic disc appearance, retinal nerve fiber layer (RNFL) thickne...
PURPOSE:To compare the relationship of Octopus perimeter cluster mean-defect (cluster MD) values wit...