We present high-speed Fourier-domain optical coherence tomography (Fd-OCT) with the phase variance based motion contrast method for visualizing retinal micro-circulation in vivo. This technique allows non-invasive visualization of a two-dimensional retinal perfusion map and concurrent volumetric morphology of retinal microvasculature with high sensitivity. The high-speed acquisition rate at 125kHz A-scans enables reduction of motion artifacts with increased scanning area if compared to previously reported results. Several scanning schemes with different sampling densities and scanning areas are evaluated to find optimal parameters for in vivo imaging. In order to evaluate this technique, we compare OCT micro-capillary imaging using the phas...
Optical Coherence Tomography (OCT) is a non-invasive micrometer-resolution depth resolved medical im...
PurposePhase-variance optical coherence tomography (PV-OCT) provides volumetric imaging of the retin...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...
We present high-speed Fourier-domain optical coherence tomography (Fd-OCT) with the phase variance b...
We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical...
We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical...
We present recent developments from a phase variance based motion contrast method of retinal vascula...
We evaluate methods to visualize human retinal micro-circulation in vivo by standard intensity-based...
A differential phase contrast (DPC) method is validated for in vivo human retinal and choroidal vasc...
Purpose. To demonstrate the application of phase-variance optical coherence tomography (pvOCT) for c...
We demonstrate an intensity-based motion sensitive method, called differential logarithmic intensity...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...
PurposeTo demonstrate the application of phase-variance optical coherence tomography (pvOCT) for con...
Human retinal and choroidal vasculature was visualized by a differential phase-contrast (DPC) method...
Purpose: Phase-variance optical coherence tomography (PV-OCT) provides volumetric imaging of the re...
Optical Coherence Tomography (OCT) is a non-invasive micrometer-resolution depth resolved medical im...
PurposePhase-variance optical coherence tomography (PV-OCT) provides volumetric imaging of the retin...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...
We present high-speed Fourier-domain optical coherence tomography (Fd-OCT) with the phase variance b...
We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical...
We present in vivo volumetric images of human retinal micro-circulation using Fourier-domain optical...
We present recent developments from a phase variance based motion contrast method of retinal vascula...
We evaluate methods to visualize human retinal micro-circulation in vivo by standard intensity-based...
A differential phase contrast (DPC) method is validated for in vivo human retinal and choroidal vasc...
Purpose. To demonstrate the application of phase-variance optical coherence tomography (pvOCT) for c...
We demonstrate an intensity-based motion sensitive method, called differential logarithmic intensity...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...
PurposeTo demonstrate the application of phase-variance optical coherence tomography (pvOCT) for con...
Human retinal and choroidal vasculature was visualized by a differential phase-contrast (DPC) method...
Purpose: Phase-variance optical coherence tomography (PV-OCT) provides volumetric imaging of the re...
Optical Coherence Tomography (OCT) is a non-invasive micrometer-resolution depth resolved medical im...
PurposePhase-variance optical coherence tomography (PV-OCT) provides volumetric imaging of the retin...
Phase variance-based motion contrast imaging is demonstrated using a spectral domain optical coheren...