Regional changes in blood flow are initiated within neural tissue to help fuel local differences in neural activity. Classically, this response was thought to arise only in larger arterioles and venules. However, recently, it has been proposed that a) the smallest vessels of the circulation make a comparable contribution, and b) the response should be localised intermittently along such vessels, due to the known distribution of contractile mural cells. To assess these hypotheses in human neural tissue in vivo, we imaged the retinal microvasculature (diameters 3-28 μm) non-invasively, using adaptive optics, before and after delivery of focal (360 μm) patches of flickering visible light. Our results demonstrated a definite average response in...
Purpose The coupling between neural activity and blood flow is a physiological key principle of ocul...
PurposeThe coupling between neural activity and blood flow is a physiological key principle of ocula...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...
Although changes in vessel diameter following gas perturbation have been documented in retinal arter...
© 2018 Dr. Angelina DuanAlthough a well-regulated blood supply is important for healthy neural funct...
poster abstractNeural activity and blood flow in the brain are tightly coupled. This coupling allows...
Purpose: We assess the increase in total retinal blood flow (TRBF) induced by flicker stimulation of...
Purpose: Neurovascular coupling (NC) in the retinal tissue is the mechanism that controls the blood ...
Abstract Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the tim...
AbstractIt has been shown that diffuse luminance flicker increases optic nerve head blood flow. The ...
BACKGROUND:Impairment of neurovascular coupling (NVC) was recently reported in the context of subara...
Purpose : Retinal arterioles and venules dilate when stimulated with flickering light. This phenome...
Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the time course ...
BACKGROUND AND AIMS: The easily accessible retinal vessels provide a unique opportunity to study a p...
Cerebral blood flow is tightly regulated, and local metabolic demands are met by adjustments to ther...
Purpose The coupling between neural activity and blood flow is a physiological key principle of ocul...
PurposeThe coupling between neural activity and blood flow is a physiological key principle of ocula...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...
Although changes in vessel diameter following gas perturbation have been documented in retinal arter...
© 2018 Dr. Angelina DuanAlthough a well-regulated blood supply is important for healthy neural funct...
poster abstractNeural activity and blood flow in the brain are tightly coupled. This coupling allows...
Purpose: We assess the increase in total retinal blood flow (TRBF) induced by flicker stimulation of...
Purpose: Neurovascular coupling (NC) in the retinal tissue is the mechanism that controls the blood ...
Abstract Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the tim...
AbstractIt has been shown that diffuse luminance flicker increases optic nerve head blood flow. The ...
BACKGROUND:Impairment of neurovascular coupling (NVC) was recently reported in the context of subara...
Purpose : Retinal arterioles and venules dilate when stimulated with flickering light. This phenome...
Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the time course ...
BACKGROUND AND AIMS: The easily accessible retinal vessels provide a unique opportunity to study a p...
Cerebral blood flow is tightly regulated, and local metabolic demands are met by adjustments to ther...
Purpose The coupling between neural activity and blood flow is a physiological key principle of ocul...
PurposeThe coupling between neural activity and blood flow is a physiological key principle of ocula...
In this study, we mathematically predict retinal vascular resistance (RVR) and retinal blood flow (R...