The theta rhythm organizes neural activity across hippocampus and entorhinal cortex. A role for theta oscillations in spatial navigation is supported by half a century of research reporting that theta frequency encodes running speed linearly so that displacement can be estimated through theta frequency integration. We show that this relationship is an artifact caused by the fact that the speed of freely moving animals could not be systematically disentangled from acceleration. Using an experimental procedure that clamps running speed at pre-set values, we find that the theta frequency of local field potentials and spike activity is linearly related to positive acceleration, but not negative acceleration or speed. The modulation by positive-...
Hippocampal theta oscillations support encoding of an animal’s position during spatial navigation, y...
Rodent hippocampal theta-band oscillations are observed throughout translational movement, implicati...
SummaryBefore the onset of locomotion, the hippocampus undergoes a transition into an activity-state...
The theta band oscillation in the hippocampus and medial entorhinal cortex carries a strong correlat...
Theta (6–12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
The hippocampal theta rhythm is required for accurate navigation and spatial memory but its relation...
The hippocampal theta rhythm is required for accurate navigation and spatial memory but its relation...
Theta (6–12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
Theta (6–12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
Hippocampus plays important roles in episodic memory formation, learning and spatial navigation. In ...
Theta (6-12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
Hippocampus plays important roles in episodic memory formation, learning and spatial navigation. In ...
Theta (6–12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
Theta (6-12 Hz) field potentials and the synchronization (coherence) of these potentials present neu...
The hippocampal theta rhythm is required for accurate navigation and spatial memory but its relation...
Hippocampal theta oscillations support encoding of an animal’s position during spatial navigation, y...
Rodent hippocampal theta-band oscillations are observed throughout translational movement, implicati...
SummaryBefore the onset of locomotion, the hippocampus undergoes a transition into an activity-state...
The theta band oscillation in the hippocampus and medial entorhinal cortex carries a strong correlat...
Theta (6–12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
The hippocampal theta rhythm is required for accurate navigation and spatial memory but its relation...
The hippocampal theta rhythm is required for accurate navigation and spatial memory but its relation...
Theta (6–12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
Theta (6–12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
Hippocampus plays important roles in episodic memory formation, learning and spatial navigation. In ...
Theta (6-12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
Hippocampus plays important roles in episodic memory formation, learning and spatial navigation. In ...
Theta (6–12 Hz) rhythmicity in the local field potential (LFP) reflects a clocking mechanism that br...
Theta (6-12 Hz) field potentials and the synchronization (coherence) of these potentials present neu...
The hippocampal theta rhythm is required for accurate navigation and spatial memory but its relation...
Hippocampal theta oscillations support encoding of an animal’s position during spatial navigation, y...
Rodent hippocampal theta-band oscillations are observed throughout translational movement, implicati...
SummaryBefore the onset of locomotion, the hippocampus undergoes a transition into an activity-state...