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J Neurophysiol 97: 4152-4161, 2007. First published March 28, 2007; doi:10.1152/jn.01200.2006
0022-3077/07 $8.00
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Discrete Place Fields of Hippocampal Formation Interneurons

W. Bryan Wilent and Douglas A. Nitz

The Neurosciences Institute, San Diego, California

Submitted 14 November 2006; accepted in final form 27 March 2007

The spike discharge of hippocampal excitatory principal cells, also called "place cells," is highly location specific, but the discharge of local inhibitory interneurons is thought to display relatively low spatial specificity. Whereas in other brain regions, such as sensory neocortex, the activity of interneurons is often exquisitely stimulus selective and directly determines the responses of neighboring excitatory neurons, the activity of hippocampal interneurons typically lacks the requisite specificity needed to shape the defined structure of principal cell fields. Here we show that hippocampal formation interneurons have "ON" fields (abrupt increases in activity) and "OFF" fields (abrupt decreases in activity) that are associated with the same location-specific informational content, spatial resolution, and dependency on context as the "place fields" of CA1 principal cells. This establishes that interneurons have well-defined place fields, thus having important implications for understanding how the hippocampus represents spatial information.


Address for reprint requests and other correspondence: D. Nitz, The Neurosciences Institute, 10640 John J. Hopkins Drive, San Diego, CA 92121-1120 (E-mail: nitz{at}nsi.edu)




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T. Klausberger and P. Somogyi
Neuronal Diversity and Temporal Dynamics: The Unity of Hippocampal Circuit Operations
Science, July 4, 2008; 321(5885): 53 - 57.
[Abstract] [Full Text] [PDF]




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