SummaryFunctional imaging signals arise from metabolic and hemodynamic activity, but how these processes are related to the synaptic and electrical activity of neurons is not well understood. To provide insight into this issue, we used in vivo imaging and simultaneous local pharmacology to study how sensory-evoked neural activity leads to intrinsic optical signals (IOS) in the well-defined circuitry of the olfactory glomerulus. Odor-evoked IOS were tightly coupled to release of glutamate and were strongly modulated by activation of presynaptic dopamine and GABA-B receptors. Surprisingly, IOS were independent of postsynaptic transmission through ionotropic or metabotropic glutamate receptors, but instead were inhibited when uptake by astrocy...
International audienceThe brain transforms clues from the external world, the sensory stimuli, into ...
AbstractWe adapted the technique of intrinsic signal imaging to visualize how odorant concentration ...
In the mammalian olfactory bulb (OB), mitral/tufted (MT) cells respond to odorant inhalation with di...
Functional imaging signals arise from metabolic and hemodynamic activity, but how these processes ar...
Functional brain-imaging techniques used in humans and animals, such as functional MRI and intrinsic...
SummaryFunctional brain-imaging techniques used in humans and animals, such as functional MRI and in...
Functional brain-imaging techniques used in humans and animals, such as functional MRI and intrinsic...
SummaryFunctional neuroimaging uses activity-dependent changes in cerebral blood flow to map brain a...
Functional neuroimaging uses activity-dependent changes in cerebral blood flow to map brain activity...
Neurons exhibit strong coupling of electrochemical and metabolic activity. Increases in intrinsic fl...
In sensory systems, peripheral organs convey sensory inputs to relay networks where information is s...
Energy demands are becoming recognized as an important constraint on neural signaling. The olfactory...
The neuronal activity-dependent change in the manner in which light is absorbed or scattered in brai...
In sensory systems, peripheral organs convey sensory inputs to relay networks where information is s...
Astrocytes are key cellular elements in both the tripartite synapse and the neuro-vascular unit. To ...
International audienceThe brain transforms clues from the external world, the sensory stimuli, into ...
AbstractWe adapted the technique of intrinsic signal imaging to visualize how odorant concentration ...
In the mammalian olfactory bulb (OB), mitral/tufted (MT) cells respond to odorant inhalation with di...
Functional imaging signals arise from metabolic and hemodynamic activity, but how these processes ar...
Functional brain-imaging techniques used in humans and animals, such as functional MRI and intrinsic...
SummaryFunctional brain-imaging techniques used in humans and animals, such as functional MRI and in...
Functional brain-imaging techniques used in humans and animals, such as functional MRI and intrinsic...
SummaryFunctional neuroimaging uses activity-dependent changes in cerebral blood flow to map brain a...
Functional neuroimaging uses activity-dependent changes in cerebral blood flow to map brain activity...
Neurons exhibit strong coupling of electrochemical and metabolic activity. Increases in intrinsic fl...
In sensory systems, peripheral organs convey sensory inputs to relay networks where information is s...
Energy demands are becoming recognized as an important constraint on neural signaling. The olfactory...
The neuronal activity-dependent change in the manner in which light is absorbed or scattered in brai...
In sensory systems, peripheral organs convey sensory inputs to relay networks where information is s...
Astrocytes are key cellular elements in both the tripartite synapse and the neuro-vascular unit. To ...
International audienceThe brain transforms clues from the external world, the sensory stimuli, into ...
AbstractWe adapted the technique of intrinsic signal imaging to visualize how odorant concentration ...
In the mammalian olfactory bulb (OB), mitral/tufted (MT) cells respond to odorant inhalation with di...