To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmoscopy (AO-SLO).In 5 normal subjects, erythrocyte aggregate distributions were analyzed on 3 different days. Erythrocyte aggregates were described as a “dark tail” in AO-SLO. The characteristics of the pathways with dark tail flow in the parafovea were measured. Additionally, the tendency for dark tail flow before and after bifurcations was analyzed to study the blood flow in detail.Average velocity in parent vessels with dark tail flow was 1.30±0.27 mm/s. Average velocity in daughter vessels with dark tail flow was 1.12±0.25 mm/s, and the average velocity of plasma gaps in daughter vessels without dark tail flow was 0.64±0.11 mm/s. Downstream from the ...
We have developed a new fiber-optic system that combines diffuse reflectance spectroscopy (DRS) and ...
We evaluate methods to visualize human retinal micro-circulation in vivo by standard intensity-based...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...
To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmoscopy (AO-...
Purpose: To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmos...
The eye provides a window through which a complete vascular system of arteries, capillaries, and vei...
Imaging the retinal vasculature offers a surrogate view of systemic vascular health, allowing noninv...
Retinal vascular diseases are a leading cause for blindness and partial sight certifications. By app...
Blood cell aggregation tracking video Originally published in Biomedical Optics Express on 01 Decemb...
International audienceImage-based angiography is a well-adapted technique to characterize vasculatur...
Purpose: Alterations in leukocyte velocity have been implicated in many retinal disease processes. H...
Adaptive optics scanning laser ophthalmoscopy (AO-SLO) has recently been used to achieve exquisite s...
Diabetic retinopathy (DR) is a leading cause of vision loss worldwide. Microaneurysms (MAs), which a...
Essential hypertension is associated with structural alterations in the microvessels; in particular,...
Purpose: Development and validation of an absolute laser Doppler velocimeter (LDV) based on an adapt...
We have developed a new fiber-optic system that combines diffuse reflectance spectroscopy (DRS) and ...
We evaluate methods to visualize human retinal micro-circulation in vivo by standard intensity-based...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...
To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmoscopy (AO-...
Purpose: To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmos...
The eye provides a window through which a complete vascular system of arteries, capillaries, and vei...
Imaging the retinal vasculature offers a surrogate view of systemic vascular health, allowing noninv...
Retinal vascular diseases are a leading cause for blindness and partial sight certifications. By app...
Blood cell aggregation tracking video Originally published in Biomedical Optics Express on 01 Decemb...
International audienceImage-based angiography is a well-adapted technique to characterize vasculatur...
Purpose: Alterations in leukocyte velocity have been implicated in many retinal disease processes. H...
Adaptive optics scanning laser ophthalmoscopy (AO-SLO) has recently been used to achieve exquisite s...
Diabetic retinopathy (DR) is a leading cause of vision loss worldwide. Microaneurysms (MAs), which a...
Essential hypertension is associated with structural alterations in the microvessels; in particular,...
Purpose: Development and validation of an absolute laser Doppler velocimeter (LDV) based on an adapt...
We have developed a new fiber-optic system that combines diffuse reflectance spectroscopy (DRS) and ...
We evaluate methods to visualize human retinal micro-circulation in vivo by standard intensity-based...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...