Increases in brain blood flow, evoked by neuronal activity, power neural computation and form the basis of BOLD (blood-oxygen-level-dependent) functional imaging. Whether blood flow is controlled solely by arteriole smooth muscle, or also by capillary pericytes, is controversial. We demonstrate that neuronal activity and the neurotransmitter glutamate evoke the release of messengers that dilate capillaries by actively relaxing pericytes. Dilation is mediated by prostaglandin E2, but requires nitric oxide release to suppress vasoconstricting 20-HETE synthesis. In vivo, when sensory input increases blood flow, capillaries dilate before arterioles and are estimated to produce 84% of the blood flow increase. In pathology, ischaemia evokes capil...
Like a computer, the brain requires a constant supply of energy, in the form of oxygen and glucose i...
In this paper, the variations in cerebral blood flow induced by global or localised capillary vasodi...
Pericytes in the brain are candidate regulators of microcirculatory blood flow because they are stra...
Increases in brain blood flow, evoked by neuronal activity, power neural computation and form the ba...
SummaryThe precise regulation of cerebral blood flow is critical for normal brain function, and its ...
The cerebral circulation is highly specialized, both structurally and functionally, and it provides ...
Pericytes, spatially-isolated contractile cells on capillaries, have been reported to contro...
Pericytes, spatially isolated contractile cells on capillaries, have been reported to control cerebr...
Pericytes are perivascular mural cells that enwrap brain capillaries and maintain blood-brain barrie...
Copyright © 2022 Choe, Yoon, Joo, Kim, Hong, Koh, Lee, Oh and Jeong.The neurovascular unit is a func...
The brain’s high energy requirements drive the need for close coupling of local neuronal activity to...
Deterioration of brain capillary flow and architecture is a hallmark of aging and dementia. It remai...
Pericytes are multi-functional cells embedded within the walls of capillaries throughout the body, i...
SummaryPericytes play a key role in the development of cerebral microcirculation. The exact role of ...
Pericytes are perivascular mural cells of brain capillaries. They are positioned centrally in the ne...
Like a computer, the brain requires a constant supply of energy, in the form of oxygen and glucose i...
In this paper, the variations in cerebral blood flow induced by global or localised capillary vasodi...
Pericytes in the brain are candidate regulators of microcirculatory blood flow because they are stra...
Increases in brain blood flow, evoked by neuronal activity, power neural computation and form the ba...
SummaryThe precise regulation of cerebral blood flow is critical for normal brain function, and its ...
The cerebral circulation is highly specialized, both structurally and functionally, and it provides ...
Pericytes, spatially-isolated contractile cells on capillaries, have been reported to contro...
Pericytes, spatially isolated contractile cells on capillaries, have been reported to control cerebr...
Pericytes are perivascular mural cells that enwrap brain capillaries and maintain blood-brain barrie...
Copyright © 2022 Choe, Yoon, Joo, Kim, Hong, Koh, Lee, Oh and Jeong.The neurovascular unit is a func...
The brain’s high energy requirements drive the need for close coupling of local neuronal activity to...
Deterioration of brain capillary flow and architecture is a hallmark of aging and dementia. It remai...
Pericytes are multi-functional cells embedded within the walls of capillaries throughout the body, i...
SummaryPericytes play a key role in the development of cerebral microcirculation. The exact role of ...
Pericytes are perivascular mural cells of brain capillaries. They are positioned centrally in the ne...
Like a computer, the brain requires a constant supply of energy, in the form of oxygen and glucose i...
In this paper, the variations in cerebral blood flow induced by global or localised capillary vasodi...
Pericytes in the brain are candidate regulators of microcirculatory blood flow because they are stra...