PURPOSE. To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neuroretinal rim tissue in glaucoma and to compare these methods to the traditional retinal nerve fiber layer thickness diagnostic parameter. METHODS. Neuroretinal rim parameters derived from three-dimensional (3D) volume scans were compared with the two-dimensional (2D) Spectralis retinal nerve fiber layer (RNFL) thickness scans for diagnostic capability. This study analyzed one eye per patient of 104 glaucoma patients and 58 healthy subjects. The shortest distances between the cup surface and the OCT-based disc margin were automatically calculated to determine the thickness and area of the minimum distance band (MDB) neuroretinal rim parameter....
Purpose: To determine whether intereye asymmetry of a three-dimensional neuroretinal rim parameter, ...
Purpose: To demonstrate that video-rate spectral domain optical coherence tomography (SDOCT) can qua...
Purpose: To evaluate retinal nerve fiber layer (RNFL), optic nerve head (ONH), and macular thickness...
Purpose To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neuro...
PURPOSE: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
PURPOSE. To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neur...
PURPOSE: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
Purpose: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
© 2016 Elsevier Inc. Purpose To evaluate the diagnostic performance of a 3-dimensional (3D) neuroret...
Purpose: To compare the rates of clinically significant artifacts for two-dimensional peripapillary ...
Purpose: To assess the structure-function relationship in glaucoma using Humphrey visual field (HVF)...
Purpose: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
Purpose: To assess the structure-function relationship in glaucoma using Humphrey visual field (HVF)...
PURPOSE. To compare the diagnostic capability of three-dimensional (3D) macular parameters against t...
Precis:In open-angle glaucoma, when neuroretinal rim tissue measured by volumetric optical coherence...
Purpose: To determine whether intereye asymmetry of a three-dimensional neuroretinal rim parameter, ...
Purpose: To demonstrate that video-rate spectral domain optical coherence tomography (SDOCT) can qua...
Purpose: To evaluate retinal nerve fiber layer (RNFL), optic nerve head (ONH), and macular thickness...
Purpose To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neuro...
PURPOSE: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
PURPOSE. To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neur...
PURPOSE: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
Purpose: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
© 2016 Elsevier Inc. Purpose To evaluate the diagnostic performance of a 3-dimensional (3D) neuroret...
Purpose: To compare the rates of clinically significant artifacts for two-dimensional peripapillary ...
Purpose: To assess the structure-function relationship in glaucoma using Humphrey visual field (HVF)...
Purpose: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
Purpose: To assess the structure-function relationship in glaucoma using Humphrey visual field (HVF)...
PURPOSE. To compare the diagnostic capability of three-dimensional (3D) macular parameters against t...
Precis:In open-angle glaucoma, when neuroretinal rim tissue measured by volumetric optical coherence...
Purpose: To determine whether intereye asymmetry of a three-dimensional neuroretinal rim parameter, ...
Purpose: To demonstrate that video-rate spectral domain optical coherence tomography (SDOCT) can qua...
Purpose: To evaluate retinal nerve fiber layer (RNFL), optic nerve head (ONH), and macular thickness...