Publication
Goal discrimination in hippocampal nonplace cells when place information is ambiguous
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- Last modified
- 05/20/2025
- Type of Material
- Authors
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Lu Zhang, Emory UniversityStephanie M Prince, Georgia Institute of TechnologyAbigail L Paulson, Georgia Institute of TechnologyAnnabelle Singer, Emory University
- Language
- English
- Date
- 2022-03-15
- Publisher
- NATL ACAD SCIENCES
- Publication Version
- Copyright Statement
- © 2022 the Author(s). Published by PNAS.
- License
- Final Published Version (URL)
- Title of Journal or Parent Work
- Volume
- 119
- Issue
- 11
- Start Page
- e2107337119
- End Page
- e2107337119
- Supplemental Material (URL)
- Abstract
- Memory-guided navigation relies on hippocampal neurons, like place cells, that encode features of the environment. However, little is known about hippocampal place codes when spatial cues provide ambiguous information about finding goals. Nonplace cells, pyramidal cells that fire without strong spatial modulation in an environment, may be well-suited to carry task-relevant information when spatial information is ambiguous. We find that when spatial cues and goal information are conflicting, nonplace cell firing distinguishes between ambiguous spatial cues. On correct trials nonplace cells had higher firing rates and altered gamma-phase modulation at task-relevant cues than on incorrect trials, while place cells showed no such differences. Finally, this goal discrimination in nonplace cells is absent in a mouse model of Alzheimer's disease that has memory impairment. Our findings show that nonplace cells differentiate ambiguous goal information that place cells do not, revealing a special contribution to coding by these nonplace cells.
- Author Notes
- Keywords
- Research Categories
- Engineering, Biomedical
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Publication File - vvg6v.pdf | Primary Content | 2025-05-19 | Public | Download |