The aim of the present study was to test the hypothesis that vascular tones of cortical surface and parenchymal blood flow can be dissociated depending on the perturbation. To this end, a novel image-based analytical method for quantitatively measuring vessel diameters and flow dynamics was developed. The algorithm relieson the spatiotemporal coherence of the pixel intensity changes induced by the transit of the fluorescent signals measured using confocal laser scanning fluorescent microscopy in the rat cerebral cortex. A cocktail of fluorescently labeled red blood cell (RBC) and plasma agents was administered to simultaneously compare RBC and plasma dynamics in the same vascular networks. The time to fluorescent signal appearance and the w...
Cortical blood flow at the level of individual capillaries and the coupling of neuronal activity to ...
Cortical blood flow at the level of individual capillaries and the coupling of neuronal activity to ...
Blood flow velocity profile in microvessels is essential for in vivo studies of substance exchange b...
The blood flow regulatory system is of great interest for understanding of energy demand and supply ...
Background and aims: The blood flow regulation system is of great interest for understanding energy ...
Cerebral blood flow is tightly regulated, and local metabolic demands are met by adjustments to ther...
Functional imaging of intrinsic signals allows minimally invasive spatiotemporal mapping of stimulus...
Introduction: The hemodynamic response following neural activation is the basis for most functional ...
To explore the spatiotemporal dynamics of red blood cells (RBCs) and plasma flow in three-dimensiona...
To explore the spatiotemporal dynamics of red blood cells (RBCs) and plasma flow in three-dimensiona...
The present study reports a semiautomatic image analysis method for measuring the spatiotemporal dyn...
The present study aimed to develop a new method for mapping blood flow velocity based on spatial evo...
Spatiotemporal variations in the flow of fluorescently labeled plasma and red blood cells (RBC) were...
To explore the spatiotemporal dynamics of red blood cells (RBCs) and plasma flow in three-dimensiona...
Spatiotemporal variations in the flow of fluorescently labeled plasma and red blood cells (RBC) were...
Cortical blood flow at the level of individual capillaries and the coupling of neuronal activity to ...
Cortical blood flow at the level of individual capillaries and the coupling of neuronal activity to ...
Blood flow velocity profile in microvessels is essential for in vivo studies of substance exchange b...
The blood flow regulatory system is of great interest for understanding of energy demand and supply ...
Background and aims: The blood flow regulation system is of great interest for understanding energy ...
Cerebral blood flow is tightly regulated, and local metabolic demands are met by adjustments to ther...
Functional imaging of intrinsic signals allows minimally invasive spatiotemporal mapping of stimulus...
Introduction: The hemodynamic response following neural activation is the basis for most functional ...
To explore the spatiotemporal dynamics of red blood cells (RBCs) and plasma flow in three-dimensiona...
To explore the spatiotemporal dynamics of red blood cells (RBCs) and plasma flow in three-dimensiona...
The present study reports a semiautomatic image analysis method for measuring the spatiotemporal dyn...
The present study aimed to develop a new method for mapping blood flow velocity based on spatial evo...
Spatiotemporal variations in the flow of fluorescently labeled plasma and red blood cells (RBC) were...
To explore the spatiotemporal dynamics of red blood cells (RBCs) and plasma flow in three-dimensiona...
Spatiotemporal variations in the flow of fluorescently labeled plasma and red blood cells (RBC) were...
Cortical blood flow at the level of individual capillaries and the coupling of neuronal activity to ...
Cortical blood flow at the level of individual capillaries and the coupling of neuronal activity to ...
Blood flow velocity profile in microvessels is essential for in vivo studies of substance exchange b...