Published in final edited form as: Nat Commun. ; 5: 5734. doi:10.1038/ncomms6734What is the organization of cerebral microvascular oxygenation and morphology that allows adequate tissue oxygenation at different activity levels? We address this question in the mouse cerebral cortex using microscopic imaging of intravascular O2 partial pressure and blood flow combined with numerical modelling. Here we show that parenchymal arterioles are responsible for 50% of the extracted O2 at baseline activity, and the majority of the remaining O2 exchange takes place within the first few capillary branches. Most capillaries release little O2 at baseline acting as an O2 reserve that is recruited during increased neuronal activity or decreased blood flow....
The relation between cerebral blood flow (CBF) and cerebral oxygen extraction fraction (OEF) can be ...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...
What is the organization of cerebral microvascular oxygenation and morphology that allows adequate t...
What is the organization of cerebral microvascular oxygenation and morphology that allows adequate t...
Our understanding of how capillary blood flow and oxygen distribute across cortical layers to meet t...
Our understanding of how capillary blood flow and oxygen distribute across cortical layers to meet t...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
Objectives: According to a model for the regulation of cerebral oxygen delivery proposed by Hyder et...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
The cerebral microvasculature plays a key role in the coupling between cerebral blood flow and meta...
Departures of normal blood flow and metabolite distribution from the cerebral microvasculature into ...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
The relation between cerebral blood flow (CBF) and cerebral oxygen extraction fraction (OEF) can be ...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...
What is the organization of cerebral microvascular oxygenation and morphology that allows adequate t...
What is the organization of cerebral microvascular oxygenation and morphology that allows adequate t...
Our understanding of how capillary blood flow and oxygen distribute across cortical layers to meet t...
Our understanding of how capillary blood flow and oxygen distribute across cortical layers to meet t...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
Objectives: According to a model for the regulation of cerebral oxygen delivery proposed by Hyder et...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
The cerebral microvasculature plays a key role in the coupling between cerebral blood flow and meta...
Departures of normal blood flow and metabolite distribution from the cerebral microvasculature into ...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
The relation between cerebral blood flow (CBF) and cerebral oxygen extraction fraction (OEF) can be ...
Brain metabolism is highly dependent on continuous oxygen supply. Cortical microvascular networks ex...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...