Identification of the cellular players and molecular messengers that communicate neuronal activity to the vasculature driving cerebral hemodynamics is important for (1) the basic understanding of cerebrovascular regulation and (2) interpretation of functional Magnetic Resonance Imaging (fMRI) signals. Using a combination of optogenetic stimulation and 2-photon imaging in mice, we demonstrate that selective activation of cortical excitation and inhibition elicits distinct vascular responses and identify the vasoconstrictive mechanism as Neuropeptide Y (NPY) acting on Y1 receptors. The latter implies that task-related negative Blood Oxygenation Level Dependent (BOLD) fMRI signals in the cerebral cortex under normal physiological conditions ma...
The neurovascular coupling (NVC) or functional hyperemia is the mechanism whereby neuronal activity ...
The neurovascular coupling (NVC) or functional hyperemia is the mechanism whereby neuronal activity ...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Inhibitory interneurons can evoke vasodilation and vasoconstriction, making them potential cellular ...
The communication between neurons and blood vessels to supply cells in the brain with energy is a co...
The mechanisms of neurovascular coupling contribute to ensuring brain energy supply is sufficient to...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
The neurovascular coupling (NVC) or functional hyperemia is the mechanism whereby neuronal activity ...
The neurovascular coupling (NVC) or functional hyperemia is the mechanism whereby neuronal activity ...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Identification of the cellular players and molecular messengers that communicate neuronal activity t...
Inhibitory interneurons can evoke vasodilation and vasoconstriction, making them potential cellular ...
The communication between neurons and blood vessels to supply cells in the brain with energy is a co...
The mechanisms of neurovascular coupling contribute to ensuring brain energy supply is sufficient to...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
The neurovascular coupling (NVC) or functional hyperemia is the mechanism whereby neuronal activity ...
The neurovascular coupling (NVC) or functional hyperemia is the mechanism whereby neuronal activity ...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...