Local fluctuations in the blood oxygenation level-dependent (BOLD) signal serve as the basis of functional magnetic resonance imaging (fMRI). Understanding the correlation between distinct aspects of neural activity and the BOLD response is fundamental to the interpretation of this widely used mapping signal. Analysis of this question requires the ability to precisely manipulate the activity of defined neurons. To achieve such control, we combined optogenetic drive of neocortical neurons with high-resolution (9.4 T) rodent fMRI and detailed analysis of neurophysiological data. Light-driven activation of pyramidal neurons resulted in a positive BOLD response at the stimulated site. To help differentiate the neurophysiological correlate(s) of...
The fMRI-BOLD contrast is widely used to study the neural basis of sensory perception and cognition....
Understanding the nature of the link between neuronal activity and BOLD signal plays a crucial role ...
<br>Background: Simultaneous intracortical recordings of neural activity and blood-oxygen-leve...
In a recent Letter to Nature, Lee and colleagues1 combined optogenetic stimulation with functional m...
The BOLD fMRI response in the cortex is often assumed to reflect changes in excitatory neural activi...
Magnetic resonance imaging (MRI) has rapidly become an important tool in clinical medicine and biolo...
Despite a rapidly-growing scientific and clinical brain imaging literature based on functional magne...
Introduction Blood oxygenation level dependent (BOLD) functional magnetic resonance imaging (fMRI) i...
Functional magnetic resonance imaging (fMRI) is widely used to study the operational organization of...
Functional Magnetic Resonance Imaging (fMRI) has quickly grown into one of the most important tools ...
Blood-oxygen-level-dependent (BOLD) functional magnetic resonance imaging (fMRI) is the most widely ...
SummaryBackgroundSimultaneous intracortical recordings of neural activity and blood-oxygen-level-dep...
Background Simultaneous intracortical recordings of neural activity and blood-oxygen-level-dependent...
Introducing optogenetics into neurovascular research can provide novel insights into the cell-specif...
The contribution of fMRI to our understanding of the functional anatomy of the brain is directly rel...
The fMRI-BOLD contrast is widely used to study the neural basis of sensory perception and cognition....
Understanding the nature of the link between neuronal activity and BOLD signal plays a crucial role ...
<br>Background: Simultaneous intracortical recordings of neural activity and blood-oxygen-leve...
In a recent Letter to Nature, Lee and colleagues1 combined optogenetic stimulation with functional m...
The BOLD fMRI response in the cortex is often assumed to reflect changes in excitatory neural activi...
Magnetic resonance imaging (MRI) has rapidly become an important tool in clinical medicine and biolo...
Despite a rapidly-growing scientific and clinical brain imaging literature based on functional magne...
Introduction Blood oxygenation level dependent (BOLD) functional magnetic resonance imaging (fMRI) i...
Functional magnetic resonance imaging (fMRI) is widely used to study the operational organization of...
Functional Magnetic Resonance Imaging (fMRI) has quickly grown into one of the most important tools ...
Blood-oxygen-level-dependent (BOLD) functional magnetic resonance imaging (fMRI) is the most widely ...
SummaryBackgroundSimultaneous intracortical recordings of neural activity and blood-oxygen-level-dep...
Background Simultaneous intracortical recordings of neural activity and blood-oxygen-level-dependent...
Introducing optogenetics into neurovascular research can provide novel insights into the cell-specif...
The contribution of fMRI to our understanding of the functional anatomy of the brain is directly rel...
The fMRI-BOLD contrast is widely used to study the neural basis of sensory perception and cognition....
Understanding the nature of the link between neuronal activity and BOLD signal plays a crucial role ...
<br>Background: Simultaneous intracortical recordings of neural activity and blood-oxygen-leve...