Retinal, choroidal and scleral imaging by using swept-source optical coherence tomography (SS-OCT) with a 1-μm band probe light, and high-contrast and three-dimensional (3D) imaging of the choroidal vasculature are presented. This SS-OCT has a measurement speed of 28,000 A-lines/s, a depth resolution of 10.4 μm in tissue, and a sensitivity of 99.3 dB. Owing to the high penetration of the 1-μm probe light and the high sensitivity of the system, the in vivo sclera of a healthy volunteer can be observed. A software-based algorithm of scattering optical coherence angiography (S-OCA) is developed for the high-contrast and 3D imaging of the choroidal vessels. The S-OCA is used to visualize the 3D choroidal vasculature of the in vivo human macula ...
Optical coherence tomography (OCT) was one of the biggest advances in ophthalmic imaging. Building o...
Line-field spectral domain optical coherence tomography (LF-SDOCT) has been developed for very high-...
Human retinal and choroidal vasculature was visualized by a differential phase-contrast (DPC) method...
Scattering optical coherence angiography (S-OCA) is a noninvasive imaging method that is based on th...
An automated choroidal vessel segmentation and quantification method for high-penetration optical co...
Adaptive optics optical coherence tomography (AO-OCT) provides three-dimensional high-isotropic-reso...
Dual-beam-scan Doppler optical coherence angiography (DB-OCA) with a 1-μm-wavelength probe is demons...
Noninvasive angiography is demonstrated for the in vivo human eye. Three-dimensional flow imaging ha...
A high-penetration swept-source optical coherence tomography (HP-SS-OCT) system based on a 1-μm shor...
Retinal and choroidal vascular imaging is a key to the better understanding and diagnosis of eye dis...
(SS-OCT) system, which uses a ready-to-ship scanning lightsource, is demonstrated. The light source ...
Purpose. To investigate the retinal and choroidal vascular pattern, structure, and thickness using h...
Comprehensive angiography provides insight into the diagnosis of vascular-related diseases. However,...
In this study, we present dual-beam Doppler optical coherence angiography with variable beam separat...
One of the greatest needs in modern ophthalmology is access to the eye choroid in vivo. Without it, ...
Optical coherence tomography (OCT) was one of the biggest advances in ophthalmic imaging. Building o...
Line-field spectral domain optical coherence tomography (LF-SDOCT) has been developed for very high-...
Human retinal and choroidal vasculature was visualized by a differential phase-contrast (DPC) method...
Scattering optical coherence angiography (S-OCA) is a noninvasive imaging method that is based on th...
An automated choroidal vessel segmentation and quantification method for high-penetration optical co...
Adaptive optics optical coherence tomography (AO-OCT) provides three-dimensional high-isotropic-reso...
Dual-beam-scan Doppler optical coherence angiography (DB-OCA) with a 1-μm-wavelength probe is demons...
Noninvasive angiography is demonstrated for the in vivo human eye. Three-dimensional flow imaging ha...
A high-penetration swept-source optical coherence tomography (HP-SS-OCT) system based on a 1-μm shor...
Retinal and choroidal vascular imaging is a key to the better understanding and diagnosis of eye dis...
(SS-OCT) system, which uses a ready-to-ship scanning lightsource, is demonstrated. The light source ...
Purpose. To investigate the retinal and choroidal vascular pattern, structure, and thickness using h...
Comprehensive angiography provides insight into the diagnosis of vascular-related diseases. However,...
In this study, we present dual-beam Doppler optical coherence angiography with variable beam separat...
One of the greatest needs in modern ophthalmology is access to the eye choroid in vivo. Without it, ...
Optical coherence tomography (OCT) was one of the biggest advances in ophthalmic imaging. Building o...
Line-field spectral domain optical coherence tomography (LF-SDOCT) has been developed for very high-...
Human retinal and choroidal vasculature was visualized by a differential phase-contrast (DPC) method...