Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coherence tomography system for the in vivo human retina. This contrast technique spatially identifies locations of motion within the retina primarily associated with vasculature. Histogram-based noise analysis of the motion contrast images was used to reduce the motion noise created by transverse eye motion. En face summation images created from the 3D motion contrast data are presented with segmentation of selected retinal layers to provide non-invasive vascular visualization comparable to currently used invasive angiographic imaging. This motion contrast technique has demonstrated the ability to visualize resolution-limited vasculature independen...
We evaluate methods to visualize human retinal micro-circulation in vivo by standard intensity-based...
Purpose. To test the hypothesis that a novel phase-contrast optical coherence tomography (OCT) syste...
Purpose: Phase-variance optical coherence tomography (PV-OCT) provides volumetric imaging of the re...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...
We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical...
We formulate a theory to show that the statistics of OCT signal amplitude and intensity are highly d...
We present high-speed Fourier-domain optical coherence tomography (Fd-OCT) with the phase variance b...
We demonstrate an intensity-based motion sensitive method, called differential logarithmic intensity...
We present recent developments from a phase variance based motion contrast method of retinal vascula...
A differential phase contrast (DPC) method is validated for in vivo human retinal and choroidal vasc...
Noninvasive angiography is demonstrated for the in vivo human eye. Three-dimensional flow imaging ha...
We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical...
Human retinal and choroidal vasculature was visualized by a differential phase-contrast (DPC) method...
Detailed visualization of microvascular changes in the human retina is clinically limited by the cap...
We evaluate methods to visualize human retinal micro-circulation in vivo by standard intensity-based...
Purpose. To test the hypothesis that a novel phase-contrast optical coherence tomography (OCT) syste...
Purpose: Phase-variance optical coherence tomography (PV-OCT) provides volumetric imaging of the re...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...
We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical...
We formulate a theory to show that the statistics of OCT signal amplitude and intensity are highly d...
We present high-speed Fourier-domain optical coherence tomography (Fd-OCT) with the phase variance b...
We demonstrate an intensity-based motion sensitive method, called differential logarithmic intensity...
We present recent developments from a phase variance based motion contrast method of retinal vascula...
A differential phase contrast (DPC) method is validated for in vivo human retinal and choroidal vasc...
Noninvasive angiography is demonstrated for the in vivo human eye. Three-dimensional flow imaging ha...
We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical...
Human retinal and choroidal vasculature was visualized by a differential phase-contrast (DPC) method...
Detailed visualization of microvascular changes in the human retina is clinically limited by the cap...
We evaluate methods to visualize human retinal micro-circulation in vivo by standard intensity-based...
Purpose. To test the hypothesis that a novel phase-contrast optical coherence tomography (OCT) syste...
Purpose: Phase-variance optical coherence tomography (PV-OCT) provides volumetric imaging of the re...