scholarly article | Q13442814 |
P2093 | author name string | David George Rosenegger | |
Grant Robert Gordon | |||
P2860 | cites work | Neurovascular coupling is not mediated by potassium siphoning from glial cells | Q36532481 |
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Brain metabolism dictates the polarity of astrocyte control over arterioles | Q42089441 | ||
Astrocytes are endogenous regulators of basal transmission at central synapses | Q42493231 | ||
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Neuron-to-astrocyte signaling is central to the dynamic control of brain microcirculation. | Q44240672 | ||
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Norepinephrine triggers release of glial ATP to increase postsynaptic efficacy. | Q46581514 | ||
Rapid astrocyte calcium signals correlate with neuronal activity and onset of the hemodynamic response in vivo | Q48144192 | ||
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Effect of indomethacin on local cerebral blood flow in awake, minimally restrained rats. | Q51869595 | ||
Effects of Indomethacin on Cerebral Blood Flow and Oxygen Consumption in Barbiturate-Anesthetized Normocapnic and Hypercapnic Rats | Q51869597 | ||
Indomethacin restricts cerebral blood flow during pressure ventilation of newborn pigs | Q54381366 | ||
Global and local fMRI signals driven by neurons defined optogenetically by type and wiring | Q22122183 | ||
Glia-derived D-serine controls NMDA receptor activity and synaptic memory | Q28241395 | ||
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A transcriptome database for astrocytes, neurons, and oligodendrocytes: a new resource for understanding brain development and function | Q29547320 | ||
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Synaptic scaling mediated by glial TNF-alpha | Q29616816 | ||
Glial and neuronal control of brain blood flow | Q29620058 | ||
Glial cells dilate and constrict blood vessels: a mechanism of neurovascular coupling | Q30481525 | ||
Astrocytic endfoot Ca2+ and BK channels determine both arteriolar dilation and constriction. | Q30493752 | ||
TRPV4 channels stimulate Ca2+-induced Ca2+ release in astrocytic endfeet and amplify neurovascular coupling responses. | Q30538817 | ||
Rapid stimulus-evoked astrocyte Ca2+ elevations and hemodynamic responses in mouse somatosensory cortex in vivo | Q30558214 | ||
Dependency of cortical functional hyperemia to forepaw stimulation on epoxygenase and nitric oxide synthase activities in rats | Q31058665 | ||
Nonlinear neurovascular coupling in rat sensory cortex by activation of transcallosal fibers | Q33253297 | ||
Imaging cellular network dynamics in three dimensions using fast 3D laser scanning | Q33265350 | ||
Astrocytic calcium signaling: mechanism and implications for functional brain imaging | Q33374299 | ||
Long-term potentiation depends on release of D-serine from astrocytes | Q33595366 | ||
Pyramidal neurons are "neurogenic hubs" in the neurovascular coupling response to whisker stimulation. | Q33953300 | ||
Coupling of neural activity to blood flow in olfactory glomeruli is mediated by astrocytic pathways | Q34067313 | ||
Cortical depth-specific microvascular dilation underlies laminar differences in blood oxygenation level-dependent functional MRI signal | Q34093807 | ||
Circadian and homeostatic modulation of functional connectivity and regional cerebral blood flow in humans under normal entrained conditions | Q34153429 | ||
Astrocytic Gq-GPCR-linked IP3R-dependent Ca2+ signaling does not mediate neurovascular coupling in mouse visual cortex in vivo | Q34233464 | ||
Induction of COX-2 enzyme and down-regulation of COX-1 expression by lipopolysaccharide (LPS) control prostaglandin E2 production in astrocytes | Q34244599 | ||
Glutamate-mediated astrocyte-neuron signalling | Q34322476 | ||
Astrocytic purinergic signaling coordinates synaptic networks | Q34457580 | ||
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Rhythmic expression of cytochrome P450 epoxygenases CYP4x1 and CYP2c11 in the rat brain and vasculature. | Q34627489 | ||
Astrocyte control of the cerebrovasculature. | Q34656875 | ||
Cerebral blood flow modulation by Basal forebrain or whisker stimulation can occur independently of large cytosolic Ca2+ signaling in astrocytes. | Q34778937 | ||
Tuned responses of astrocytes and their influence on hemodynamic signals in the visual cortex | Q34787685 | ||
Cyclooxygenases 1 and 2 differentially regulate blood pressure and cerebrovascular responses to acute and chronic intermittent hypoxia: implications for sleep apnea. | Q35021937 | ||
Purinergic control of vascular tone in the retina | Q35052965 | ||
Monitoring astrocyte calcium microdomains with improved membrane targeted GCaMP reporters | Q35106060 | ||
Oxygen modulation of neurovascular coupling in the retina | Q35471273 | ||
Impact of wavefront distortion and scattering on 2-photon microscopy in mammalian brain tissue | Q36014841 | ||
P433 | issue | 3 | |
P921 | main subject | astrocyte | Q502961 |
P304 | page(s) | 197-203 | |
P577 | publication date | 2015-04-01 | |
P13046 | publication type of scholarly work | review article | Q7318358 |
P1433 | published in | Microcirculation | Q15764357 |
P1476 | title | A slow or modulatory role of astrocytes in neurovascular coupling | |
P478 | volume | 22 |
Q57811524 | Altered dynamics of neurovascular coupling in CADASIL |
Q38952233 | Binaural blood flow control by astrocytes: listening to synapses and the vasculature. |
Q47158889 | Cerebral and Retinal Neurovascular Changes: A Biomarker for Alzheimer's Disease |
Q90367263 | Comparing dynamic causal models of neurovascular coupling with fMRI and EEG/MEG |
Q48280657 | Feed the brain: insights into the study of neurovascular coupling |
Q52691744 | Impact of Metabolic Diseases on Cerebral Circulation: Structural and Functional Consequences. |
Q40969592 | Interpreting BOLD: towards a dialogue between cognitive and cellular neuroscience |
Q47553659 | Multiscale energy reallocation during low-frequency steady-state brain response. |
Q31125447 | Neuronal networks and mediators of cortical neurovascular coupling responses in normal and altered brain states. |
Q36765857 | Neurovascular coupling in humans: Physiology, methodological advances and clinical implications |
Q58598046 | Optical imaging and modulation of neurovascular responses |
Q38667287 | Steady-State Free Ca2+ in Astrocytes Is Decreased by Experience and Impacts Arteriole Tone |
Q38405750 | Steady-state BOLD Response to Higher-order Cognition Modulates Low-Frequency Neural Oscillations. |
Q89291620 | Synchronized Astrocytic Ca2+ Responses in Neurovascular Coupling during Somatosensory Stimulation and for the Resting State |
Q55024618 | The Role of Endothelial Ca2+ Signaling in Neurovascular Coupling: A View from the Lumen. |
Q55516037 | The pial vasculature of the mouse develops according to a sensory-independent program. |
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