Human theta oscillations exhibit task dependence during virtual maze navigation
- 24 June 1999
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 399 (6738) , 781-784
- https://doi.org/10.1038/21645
Abstract
Theta oscillations (electroencephalographic activity with a frequency of 4–8 Hz) have long been implicated in spatial navigation in rodents1,2,3,; however, the role of theta oscillators in human spatial navigation has not been explored. Here we describe subdural recordings from epileptic patients learning to navigate computer-generated mazes. Visual inspection of the raw intracranial signal revealed striking episodes of high-amplitude slow-wave oscillations at a number of areas of the cortex, including temporal cortex. Spectral analysis showed that these oscillations were in the theta band. These episodes of theta activity, which typically last several cycles, are dependent on task characteristics. Theta oscillations occur more frequently in more complex mazes; they are also more frequent during recall trials than during learning trials.Keywords
This publication has 24 references indexed in Scilit:
- GABAB modulation improves sequence disambiguation in computational models of hippocampal region CA3Hippocampus, 1998
- The Hippocampo-Neocortical DialogueCerebral Cortex, 1996
- Theta phase precession in hippocampal neuronal populations and the compression of temporal sequencesHippocampus, 1996
- Storage of 7 ± 2 Short-Term Memories in Oscillatory SubcyclesScience, 1995
- Heightened synaptic plasticity of hippocampal CA1 neurons during a Cholinergically induced rhythmic stateNature, 1993
- Phase relationship between hippocampal place units and the EEG theta rhythmHippocampus, 1993
- Hippocampal theta activity in monkeysBrain Research, 1991
- Two-stage model of memory trace formation: A role for “noisy” brain statesNeuroscience, 1989
- The physiology and pharmacology of hippocampal formation theta rhythmsProgress in Neurobiology, 1986
- Loss of Hippocampal Theta Rhythm Results in Spatial Memory Deficit in the RatScience, 1978