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Brain metabolism dictates the polarity of astrocyte control over arterioles.
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Prostaglandin E2, a postulated astrocyte-derived neurovascular coupling agent, constricts rather than dilates parenchymal arterioles.
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Tone-dependent vascular responses to astrocyte-derived signals.
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Astrocyte Ca2+ Signaling Drives Inversion of Neurovascular Coupling after Subarachnoid Hemorrhage.
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Calcium transients in astrocyte endfeet cause cerebrovascular constrictions.
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Tonic Local Brain Blood Flow Control by Astrocytes Independent of Phasic Neurovascular Coupling.
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Postischemic augmentation of conducted dilation in cerebral arterioles.
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Kinetics of thromboxane A2 receptor-driven vascular tone in the cerebral cortex ex vivo.
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Cerebral blood flow is modulated by astrocytic cAMP elevation independently of IPR2-mediated Ca signaling in mice.
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Peripheral inflammation is accompanied by cerebral hypoperfusion in mice.
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Molecular Motors in Blood-Brain Barrier Maintenance by Astrocytes.
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2
Astrocyte glycogen and brain energy metabolism.
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The relationship between blood flow and neuronal activity in the rodent olfactory bulb.
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High-resolution in vivo imaging of the neurovascular unit during spreading depression.
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Local potassium signaling couples neuronal activity to vasodilation in the brain.
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Glial cells dilate and constrict blood vessels: a mechanism of neurovascular coupling.
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Regulation of blood flow in activated human brain by cytosolic NADH/NAD+ ratio.
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Astrocyte-mediated control of cerebral blood flow.
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Coordinate control of prostaglandin E2 synthesis and uptake by hyperosmolarity in renal medullary interstitial cells.
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