Published March 15, 2002 | Version Published
Journal Article Open

Stimulus Encoding and Feature Extraction by Multiple Sensory Neurons

  • 1. ROR icon University of California, San Diego
  • 2. ROR icon California Institute of Technology
  • 3. ROR icon Baylor College of Medicine

Abstract

Neighboring cells in topographical sensory maps may transmit similar information to the next higher level of processing. How information transmission by groups of nearby neurons compares with the performance of single cells is a very important question for understanding the functioning of the nervous system. To tackle this problem, we quantified stimulus-encoding and feature extraction performance by pairs of simultaneously recorded electrosensory pyramidal cells in the hindbrain of weakly electric fish. These cells constitute the output neurons of the first central nervous stage of electrosensory processing. Using random amplitude modulations (RAMs) of a mimic of the fish's own electric field within behaviorally relevant frequency bands, we found that pyramidal cells with overlapping receptive fields exhibit strong stimulus-induced correlations. To quantify the encoding of the RAM time course, we estimated the stimuli from simultaneously recorded spike trains and found significant improvements over single spike trains. The quality of stimulus reconstruction, however, was still inferior to the one measured for single primary sensory afferents. In an analysis of feature extraction, we found that spikes of pyramidal cell pairs coinciding within a time window of a few milliseconds performed significantly better at detecting upstrokes and downstrokes of the stimulus compared with isolated spikes and even spike bursts of single cells. Coincident spikes can thus be considered "distributed bursts." Our results suggest that stimulus encoding by primary sensory afferents is transformed into feature extraction at the next processing stage. There, stimulus-induced coincident activity can improve the extraction of behaviorally relevant features from the stimulus.

Additional Information

© 2002 Society for Neuroscience. Received Nov. 2, 2001; revised Dec. 20, 2001; accepted Jan. 2, 2002. This research was supported by National Science Foundation Grant IBN-9728731, the Engineering Research Center Program, and the National Institutes of Health. We thank L. Maler for advice on histological procedures.

Attached Files

Published - 410.pdf

Files

410.pdf

Files (367.1 kB)

Name Size
md5:d62387dccc989f251c47ccb3af26f731
367.1 kB Preview Download

Additional details

Identifiers

PMCID
PMC6758263
Eprint ID
40452
Resolver ID
CaltechAUTHORS:20130816-103209443

Funding

NSF
IBN-9728731
NIH

Dates

Created
2008-01-11
Created from EPrint's datestamp field
Updated
2021-11-09
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Koch Laboratory (KLAB)