THE SIGNIFICANCE OF NEURAL ENSEMBLE CODES DURING BEHAVIOR AND COGNITION
- 1 March 1997
- journal article
- review article
- Published by Annual Reviews in Annual Review of Neuroscience
- Vol. 20 (1) , 217-244
- https://doi.org/10.1146/annurev.neuro.20.1.217
Abstract
The development of techniques to record from populations of neurons has made it possible to ask questions concerning the encoding of task-relevant information in awake, behaving animals. The issue of how groups of neurons within different brain structures register and retrieve representations of behaviorally significant events can now be addressed using multineuron-recording techniques. This review examines recent studies employing simultaneous recording of ten or more individual neurons in the mammalian brain. A major issue discussed is whether ensemble information content reconstructed from single-neuron recordings may be underestimated if compared to ensembles where those same neurons were recorded simultaneously. The mechanics of ensemble information encoding in the hippocampus is illustrated from population statistical analyses of ensemble activity during performance of a delay task. Detailed descriptions of methods of extracting ensemble information, as well as cross-correlational analyses, are discussed in the context of emergent issues regarding interpretation of ensemble data.Keywords
This publication has 81 references indexed in Scilit:
- Replay of Neuronal Firing Sequences in Rat Hippocampus During Sleep Following Spatial ExperienceScience, 1996
- Ensemble Activity and Behavior—What's the Code?Science, 1995
- Possible strategies for finding the substrate for learning‐induced changes in the hippocampal cortexJournal of Neurobiology, 1995
- Reactivation of Hippocampal Ensemble Memories During SleepScience, 1994
- Direct Cortical Representation of DrawingScience, 1994
- Dynamics of the Hippocampal Ensemble Code for SpaceScience, 1993
- Phase relationship between hippocampal place units and the EEG theta rhythmHippocampus, 1993
- Instantaneous characterization of time varying nonlinear systems (neurophysiological responses)IEEE Transactions on Biomedical Engineering, 1992
- Hippocampal Complex Spike Cells do not Change Their Place Fields if the Goal is Moved Within a Cue Controlled EnvironmentEuropean Journal of Neuroscience, 1990
- Presynaptic inhibition: detection through statistical analysis of impulse trainsBrain Research, 1975