Neuronal activity elicits metabolic and vascular responses, during which oxygen is first consumed and then supplied to the tissue via an increase in cerebral blood flow. Understanding the spatial and temporal dynamics of blood and tissue oxygen (To₂) responses following neuronal activity is crucial for understanding the physiological basis of functional neuroimaging signals. However, our knowledge is limited because previous To₂ measurements have been made at low temporal resolution (>100 ms). Here we recorded To₂ at high temporal resolution (1 ms), simultaneously with co-localized field potentials, at several cortical depths from the whisker region of the somatosensory cortex in anaesthetized rats and mice. Stimulation of the whiskers prod...
Neurovascular coupling (NVC) in the adult central nervous system (CNS) is a mechanism that provides ...
Detailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging technique...
The dinamic changes in cerebral metabolic rata of oxygen (CMRO2) and oxygen supply suring brain func...
Neuronal activity elicits metabolic and vascular responses, during which oxygen is first consumed an...
Neuronal activity elicits metabolic and vascular responses, during which oxygen is first consumed an...
Neuronal activity elicits metabolic and vascular responses, during which oxygen is first consumed an...
Using previously published data from the whisker barrel cortex of anesthetized rodents (Berwick et a...
Modern neuroimaging techniques rely on neurovascular coupling to show regions of increased brain act...
AbstractWe investigated the relationship between neuronal activity, oxygen metabolism, and hemodynam...
Complex representations in sensory cortices rely on the integration of inputs that overlap temporall...
The spatial-temporal sequence of cerebral blood flow (CBF), cerebral blood volume (CBV) and blood ve...
AbstractRecent advances in brain imaging techniques, including functional magnetic resonance imaging...
<div><p>Neurovascular coupling (NVC) in the adult central nervous system (CNS) is a mechanism that p...
Neurovascular coupling (NVC) in the adult central nervous system (CNS) is a mechanism that provides ...
Trial-by-trial variability in local field potential (LFP), tissue partial pressure of oxygen (PO2), ...
Neurovascular coupling (NVC) in the adult central nervous system (CNS) is a mechanism that provides ...
Detailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging technique...
The dinamic changes in cerebral metabolic rata of oxygen (CMRO2) and oxygen supply suring brain func...
Neuronal activity elicits metabolic and vascular responses, during which oxygen is first consumed an...
Neuronal activity elicits metabolic and vascular responses, during which oxygen is first consumed an...
Neuronal activity elicits metabolic and vascular responses, during which oxygen is first consumed an...
Using previously published data from the whisker barrel cortex of anesthetized rodents (Berwick et a...
Modern neuroimaging techniques rely on neurovascular coupling to show regions of increased brain act...
AbstractWe investigated the relationship between neuronal activity, oxygen metabolism, and hemodynam...
Complex representations in sensory cortices rely on the integration of inputs that overlap temporall...
The spatial-temporal sequence of cerebral blood flow (CBF), cerebral blood volume (CBV) and blood ve...
AbstractRecent advances in brain imaging techniques, including functional magnetic resonance imaging...
<div><p>Neurovascular coupling (NVC) in the adult central nervous system (CNS) is a mechanism that p...
Neurovascular coupling (NVC) in the adult central nervous system (CNS) is a mechanism that provides ...
Trial-by-trial variability in local field potential (LFP), tissue partial pressure of oxygen (PO2), ...
Neurovascular coupling (NVC) in the adult central nervous system (CNS) is a mechanism that provides ...
Detailed understanding of the haemodynamic changes that underlie non-invasive neuroimaging technique...
The dinamic changes in cerebral metabolic rata of oxygen (CMRO2) and oxygen supply suring brain func...