Neural activity is closely followed by a localised change in cerebral blood flow, a process termed neurovascular coupling. These hemodynamic changes form the basis of contrast in functional magnetic resonance imaging (fMRI) and are used as a correlate for neural activity. Anesthesia is widely employed in animal fMRI and neurovascular studies, however anesthetics are known to profoundly affect neural and vascular physiology, particularly in mice. Therefore, we investigated the efficacy of a novel ‘modular’ anesthesia that combined injectable (fentanyl-fluanisone/midazolam) and volatile (isoflurane) anesthetics in mice. To characterize sensory-evoked cortical hemodynamic responses, we used optical imaging spectroscopy to produce functional ma...
AbstractDetailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging t...
Detailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging technique...
Anesthesia has broad actions that include changing neuronal excitability, vascular reactivity, and o...
Neural activity is closely followed by a localised change in cerebral blood flow, a process termed n...
Purpose: The mechanisms of regional hemodynamic response during neural activation including the conc...
Blood oxygen level-dependent (BOLD) functional MRI (fMRI) is a standard approach to examine resting ...
Understanding the brain is aided by visualizing neural activity over time. The most popular method ...
The mechanism regulating cerebral blood fl ow (CBF) during brain function (neurovascular coupling)ha...
Aim: Genetically altered mice are a potentially powerful tool to elucidate the molecular basis of ne...
Elucidating the mechanisms underlying the regulation of cerebral blood flow (CBF) is important to un...
Purpose: The mechanisms of regional hemodynamic response during neural activation including the conc...
Arterial spin labeling (ASL)-MRI can noninvasively map cerebral blood flow (CBF) and cerebrovascular...
In recent years, technical and procedural advances have brought functional magnetic resonance imagin...
International audienceArterial spin labeling (ASL)-MRI can noninvasively map cerebral blood flow (CB...
International audienceArterial spin labeling (ASL)-MRI can noninvasively map cerebral blood flow (CB...
AbstractDetailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging t...
Detailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging technique...
Anesthesia has broad actions that include changing neuronal excitability, vascular reactivity, and o...
Neural activity is closely followed by a localised change in cerebral blood flow, a process termed n...
Purpose: The mechanisms of regional hemodynamic response during neural activation including the conc...
Blood oxygen level-dependent (BOLD) functional MRI (fMRI) is a standard approach to examine resting ...
Understanding the brain is aided by visualizing neural activity over time. The most popular method ...
The mechanism regulating cerebral blood fl ow (CBF) during brain function (neurovascular coupling)ha...
Aim: Genetically altered mice are a potentially powerful tool to elucidate the molecular basis of ne...
Elucidating the mechanisms underlying the regulation of cerebral blood flow (CBF) is important to un...
Purpose: The mechanisms of regional hemodynamic response during neural activation including the conc...
Arterial spin labeling (ASL)-MRI can noninvasively map cerebral blood flow (CBF) and cerebrovascular...
In recent years, technical and procedural advances have brought functional magnetic resonance imagin...
International audienceArterial spin labeling (ASL)-MRI can noninvasively map cerebral blood flow (CB...
International audienceArterial spin labeling (ASL)-MRI can noninvasively map cerebral blood flow (CB...
AbstractDetailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging t...
Detailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging technique...
Anesthesia has broad actions that include changing neuronal excitability, vascular reactivity, and o...