PURPOSE. To find evidence of retinal vasomotion and to examine the relationship between erythrocyte dynamics and previously observed high-frequency pulsatile blood flow through the choriocapillaris. METHODS. An osmotic shock technique was used to encapsulate indocyanine green (ICG) dye in erythrocyte ghost cells at a concentration that produced maximum cell fluorescence. By obviating the plasma staining that results from aqueous ICG’s high affinity for plasma proteins, high contrast was maintained between reinjected ICG-loaded erythrocytes and their plasma background. High-speed, high-magnification ICG angiograms showing individual cell movement were recorded from the intact eyes of four monkeys and three rabbits for periods up ...
Microspectrophotometry has been applied to single red blood cells to reinvestigate the linked proces...
To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmoscopy (AO-...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2014.To date, the nature of vasoregul...
PURPOSE. To find evidence of retinal vasomotion and to examine the relationship between erythrocyte...
Purpose To find evidence of retinal vasomotion and to examine the relationship between erythrocyte ...
The retinal and choroidal blood flow dynamics may provide insight into the pathophysiology and seque...
The retina is a highly metabolically active tissue with large demands on the supply of nutrients. Di...
Imaging the retinal vasculature offers a surrogate view of systemic vascular health, allowing noninv...
The eye provides a window through which a complete vascular system of arteries, capillaries, and vei...
Purpose: To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmos...
Regional changes in blood flow are initiated within neural tissue to help fuel local differences in ...
Energy production in the brain depends almost exclusively on oxidative metabolism. Neurons have smal...
The rapid development of portable precision detection methods and the crisis of insufficient blood s...
The tight coupling between cerebral blood flow and neural activity is a key feature of normal brain ...
Purpose: We assess the increase in total retinal blood flow (TRBF) induced by flicker stimulation of...
Microspectrophotometry has been applied to single red blood cells to reinvestigate the linked proces...
To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmoscopy (AO-...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2014.To date, the nature of vasoregul...
PURPOSE. To find evidence of retinal vasomotion and to examine the relationship between erythrocyte...
Purpose To find evidence of retinal vasomotion and to examine the relationship between erythrocyte ...
The retinal and choroidal blood flow dynamics may provide insight into the pathophysiology and seque...
The retina is a highly metabolically active tissue with large demands on the supply of nutrients. Di...
Imaging the retinal vasculature offers a surrogate view of systemic vascular health, allowing noninv...
The eye provides a window through which a complete vascular system of arteries, capillaries, and vei...
Purpose: To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmos...
Regional changes in blood flow are initiated within neural tissue to help fuel local differences in ...
Energy production in the brain depends almost exclusively on oxidative metabolism. Neurons have smal...
The rapid development of portable precision detection methods and the crisis of insufficient blood s...
The tight coupling between cerebral blood flow and neural activity is a key feature of normal brain ...
Purpose: We assess the increase in total retinal blood flow (TRBF) induced by flicker stimulation of...
Microspectrophotometry has been applied to single red blood cells to reinvestigate the linked proces...
To characterize human parafoveal blood flow using adaptive optics scanning laser ophthalmoscopy (AO-...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2014.To date, the nature of vasoregul...