Purpose. To develop an automated approach for segmenting the neural canal opening (NCO) and cup at the level of the retinal pigment epithelium (RPE)/Bruch's membrane (BM) complex in spectral-domain optical coherence tomography (SD-OCT) volumes. To investigate the correspondence and discrepancy between the NCO-based metrics and the clinical disc margin on fundus photographs of glaucoma subjects. Methods. SD-OCT scans and corresponding stereo fundus photographs of the optic nerve head were obtained from 68 eyes of 34 patients with glaucoma or glaucoma suspicion. Manual planimetry was performed by three glaucoma experts to delineate a reference standard (RS) for cup and disc margins from the images. An automated graph-theoretic approach wa...
Structural differences between optic nerve head (ONH) parameters in glaucomatous and non-glaucomatou...
Purpose To compare Bruch's membrane opening (BMO)-based spectral domain optical coherence tomography...
Abstract. We present a method for automatically segmenting the blood vessels in optic nerve head (ON...
Purpose. To develop an automated approach for segmenting the neural canal opening (NCO) and cup at t...
PURPOSE. To develop an automated approach for segmenting the neural canal opening (NCO) and cup at t...
PURPOSE—To evaluate the performance of an automated algorithm for determination of the cup and rim f...
Objective: To characterize optic nerve head (ONH) anatomy related to the clinical optic disc margin ...
PURPOSE. To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neur...
Purpose: To characterize anatomical dimensions of a disc notch using novel methods using spectral do...
Purpose To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neuro...
PurposeTo assess anterior scleral canal opening (ASCO) offset relative to Bruch's membrane opening (...
Purpose: To measure Ganglion Cell Layer (GCL) and Retinal Nerve Fiber Layer (RNFL) thickness of the ...
PURPOSE. We previously demonstrated that most eyes have regionally variable extensions of Bruch's me...
Purpose: To demonstrate that video-rate spectral domain optical coherence tomography (SDOCT) can qua...
Purpose: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
Structural differences between optic nerve head (ONH) parameters in glaucomatous and non-glaucomatou...
Purpose To compare Bruch's membrane opening (BMO)-based spectral domain optical coherence tomography...
Abstract. We present a method for automatically segmenting the blood vessels in optic nerve head (ON...
Purpose. To develop an automated approach for segmenting the neural canal opening (NCO) and cup at t...
PURPOSE. To develop an automated approach for segmenting the neural canal opening (NCO) and cup at t...
PURPOSE—To evaluate the performance of an automated algorithm for determination of the cup and rim f...
Objective: To characterize optic nerve head (ONH) anatomy related to the clinical optic disc margin ...
PURPOSE. To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neur...
Purpose: To characterize anatomical dimensions of a disc notch using novel methods using spectral do...
Purpose To describe spectral-domain optical coherence tomography (OCT) methods for quantifying neuro...
PurposeTo assess anterior scleral canal opening (ASCO) offset relative to Bruch's membrane opening (...
Purpose: To measure Ganglion Cell Layer (GCL) and Retinal Nerve Fiber Layer (RNFL) thickness of the ...
PURPOSE. We previously demonstrated that most eyes have regionally variable extensions of Bruch's me...
Purpose: To demonstrate that video-rate spectral domain optical coherence tomography (SDOCT) can qua...
Purpose: To compare the diagnostic capability of 3-dimensional (3D) neuroretinal rim parameters with...
Structural differences between optic nerve head (ONH) parameters in glaucomatous and non-glaucomatou...
Purpose To compare Bruch's membrane opening (BMO)-based spectral domain optical coherence tomography...
Abstract. We present a method for automatically segmenting the blood vessels in optic nerve head (ON...