Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the time course and magnitude of changes in the velocity (Vel), volume (Vol) and flow (F) of blood and tissue reflectance (R) at the optic disk in response to 40 and 50 s of increased retinal neural activity. This activity was evoked by diffuse luminance flicker of the retinal posterior pole. After 20 s of flicker, the group averages of Vel, Vol, and F were significantly higher than at baseline (pre-flicker) by 12, 24 and 38%. Time constants of the increases in Vel, Vol, and F were 3.4, 12.7 and 9.1 s, respectively. The group average change in R of 1% was not significant. However, in one subject, 15 recordings from the same site of the optic disk showed a si...
We evaluated in ocular hypertension (OHT) and early glaucoma (EOAG) patients the optic nerve head (O...
We describe a device to measure blood perfusion for the human optic nerve head (ONH) based on laser ...
poster abstractNeural activity and blood flow in the brain are tightly coupled. This coupling allows...
Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the time course ...
Abstract Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the tim...
Purpose: Neurovascular coupling (NC) in the retinal tissue is the mechanism that controls the blood ...
AbstractIt has been shown that diffuse luminance flicker increases optic nerve head blood flow. The ...
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...
The present paper reviews the methodology and clinical results of recording, by laser Doppler flowme...
Purpose: We assess the increase in total retinal blood flow (TRBF) induced by flicker stimulation of...
PurposeChanges in optic nerve reflectance in response to visual stimulation have been demonstrated i...
Regional changes in blood flow are initiated within neural tissue to help fuel local differences in ...
Previous investigations of blood flow in the optic nerve have been limited by the lack of an effecti...
PURPOSE: Laser Doppler measurements performed immediately after the transition from dark adaptation ...
We evaluated in ocular hypertension (OHT) and early glaucoma (EOAG) patients the optic nerve head (O...
We describe a device to measure blood perfusion for the human optic nerve head (ONH) based on laser ...
poster abstractNeural activity and blood flow in the brain are tightly coupled. This coupling allows...
Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the time course ...
Abstract Near-infrared laser Doppler flowmetry was applied in 15 normal volunteers to record the tim...
Purpose: Neurovascular coupling (NC) in the retinal tissue is the mechanism that controls the blood ...
AbstractIt has been shown that diffuse luminance flicker increases optic nerve head blood flow. The ...
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...
The present paper reviews the methodology and clinical results of recording, by laser Doppler flowme...
Purpose: We assess the increase in total retinal blood flow (TRBF) induced by flicker stimulation of...
PurposeChanges in optic nerve reflectance in response to visual stimulation have been demonstrated i...
Regional changes in blood flow are initiated within neural tissue to help fuel local differences in ...
Previous investigations of blood flow in the optic nerve have been limited by the lack of an effecti...
PURPOSE: Laser Doppler measurements performed immediately after the transition from dark adaptation ...
We evaluated in ocular hypertension (OHT) and early glaucoma (EOAG) patients the optic nerve head (O...
We describe a device to measure blood perfusion for the human optic nerve head (ONH) based on laser ...
poster abstractNeural activity and blood flow in the brain are tightly coupled. This coupling allows...