Burst spike patterns are common in regions of the hippocampal formation such as the subiculum and medial entorhinal cortex (MEC). Neurons in these areas are immersed in extracellular electrical potential fluctuations often recorded as the local field potential (LFP). LFP rhythms within different frequency bands are linked to different behavioral states. For example, delta rhythms are often associated with slow-wave sleep, inactivity and anesthesia; whereas theta rhythms are prominent during awake exploratory behavior and REM sleep. Recent evidence suggests that bursting neurons in the hippocampal formation can encode LFP features. We explored this hypothesis using a two-compartment model of a bursting pyramidal neuron driven by time-varying...
Memory and spatial navigation involve complex neural processes that depend on accurate and coordinat...
The aim of this project was to determine coherence between two types of neural recordings which can ...
Characterizing hippocampal electrical rhythmic activities requires a broadly applicable methodology ...
Burst spike patterns are common in regions of the hippocampal formation such as the subiculum and me...
Burst spike patterns are common in regions of the hippocampal formation such as the subiculum and me...
AbstractNeuronal firing in the hippocampal formation relative to the phase of local field potentials...
Neuronal firing in the hippocampal formation relative to the phase of local field potentials (LFP) h...
Local field potentials (LFPs) are thought to reflect the combined activity of neuronal populations p...
Single neurons in the cerebral cortex are immersed in a fluctuating electric field, the local field ...
A prevalent local field potential (LFP) rhythm in the CA1 hippocampus associated with memory process...
When monitoring neural activity using intracranial electrical recordings, researchers typically cons...
This dissertation explores the relations between the hippocampal theta rhythm, the activity patterns...
Hippocampal theta oscillations (4-12 Hz) are consistently recorded during memory tasks and spatial n...
Biological oscillations can be controlled by a small population of rhythmic pacemaker cells, or in t...
Several network patterns allow for information exchange between the neocortex and the entorhinal–hip...
Memory and spatial navigation involve complex neural processes that depend on accurate and coordinat...
The aim of this project was to determine coherence between two types of neural recordings which can ...
Characterizing hippocampal electrical rhythmic activities requires a broadly applicable methodology ...
Burst spike patterns are common in regions of the hippocampal formation such as the subiculum and me...
Burst spike patterns are common in regions of the hippocampal formation such as the subiculum and me...
AbstractNeuronal firing in the hippocampal formation relative to the phase of local field potentials...
Neuronal firing in the hippocampal formation relative to the phase of local field potentials (LFP) h...
Local field potentials (LFPs) are thought to reflect the combined activity of neuronal populations p...
Single neurons in the cerebral cortex are immersed in a fluctuating electric field, the local field ...
A prevalent local field potential (LFP) rhythm in the CA1 hippocampus associated with memory process...
When monitoring neural activity using intracranial electrical recordings, researchers typically cons...
This dissertation explores the relations between the hippocampal theta rhythm, the activity patterns...
Hippocampal theta oscillations (4-12 Hz) are consistently recorded during memory tasks and spatial n...
Biological oscillations can be controlled by a small population of rhythmic pacemaker cells, or in t...
Several network patterns allow for information exchange between the neocortex and the entorhinal–hip...
Memory and spatial navigation involve complex neural processes that depend on accurate and coordinat...
The aim of this project was to determine coherence between two types of neural recordings which can ...
Characterizing hippocampal electrical rhythmic activities requires a broadly applicable methodology ...