Intravital microscopy has proven to be a powerful tool for studying microvascular physiology. In this study, we propose a gas exchange system compatible with intravital microscopy that can be used to impose gas perturbations to small localized regions in skeletal muscles or other tissues that can be imaged using conventional inverted microscopes. We demonstrated the effectiveness of this system by locally manipulating oxygen concentrations in rat extensor digitorum longus muscle and measuring the resulting vascular responses. A computational model of oxygen transport was used to partially validate the localization of oxygen changes in the tissue, and oxygen saturation of red blood cells flowing through capillaries were measured as a surroga...
Understanding of oxygen delivery by the microcirculation has been dominated by the unitary component...
The purpose of this thesis was to examine how the use of real 3-dimensional (3D) capillary network g...
The supply of oxygen in sufficient quantity is vital for the correct functioning of all organs in th...
Since erythrocytes release the vasodilator adenosine triphosphate (ATP) in an oxygen (O2) dependent ...
In skeletal muscle (SM), the microcirculation distributes blood flow to capillary networks to meet l...
The purpose of this thesis was to develop tools for studying oxygen-dependent regulation of red bloo...
The goal of this thesis was to test the hypothesis that insulin mediated hyperemia is partially depe...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
Several vasoactive molecules are involved in coordinating microvascular blood flow with metabolic de...
Capillary perfusion in skeletal muscle is highly coordinated both spatially and temporally with the ...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
The supply of oxygen in sufficient quantity is vital for the correct functioning of all organs in th...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
The purpose of this thesis was to evaluate the physiology of red blood cell (RBC) distribution in sk...
Understanding of oxygen delivery by the microcirculation has been dominated by the unitary component...
The purpose of this thesis was to examine how the use of real 3-dimensional (3D) capillary network g...
The supply of oxygen in sufficient quantity is vital for the correct functioning of all organs in th...
Since erythrocytes release the vasodilator adenosine triphosphate (ATP) in an oxygen (O2) dependent ...
In skeletal muscle (SM), the microcirculation distributes blood flow to capillary networks to meet l...
The purpose of this thesis was to develop tools for studying oxygen-dependent regulation of red bloo...
The goal of this thesis was to test the hypothesis that insulin mediated hyperemia is partially depe...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
Several vasoactive molecules are involved in coordinating microvascular blood flow with metabolic de...
Capillary perfusion in skeletal muscle is highly coordinated both spatially and temporally with the ...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
The supply of oxygen in sufficient quantity is vital for the correct functioning of all organs in th...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
The purpose of this thesis was to evaluate the physiology of red blood cell (RBC) distribution in sk...
Understanding of oxygen delivery by the microcirculation has been dominated by the unitary component...
The purpose of this thesis was to examine how the use of real 3-dimensional (3D) capillary network g...
The supply of oxygen in sufficient quantity is vital for the correct functioning of all organs in th...