Finite Scale of Spatial Representation in the Hippocampus¶
Kjelstrup. (2008). Finite Scale of Spatial Representation in the Hippocampus. Science.
Cited by¶
1 citation across 1 artifact.
Each citation links to the sentence it supports in the citing article.
Domain-specific¶
- Place Field
- but field size varies systematically along the hippocampal long axis: dorsal CA1 cells carry small, precise fields; ventral CA1 cells carry large, coarsely-grained ones — a gradient that maps onto the precision-generalisation trade-off in spatial cognition
This sourceMeasurement of a topographically graded place-field scale along the hippocampal long axis, increasing almost linearly from <1 metre at the dorsal pole to about 10 metres at the ventral pole.
Supported in partVerified against the publisher's abstract
“CA3 cells had well-defined place fields at all levels.”
- but field size varies systematically along the hippocampal long axis: dorsal CA1 cells carry small, precise fields; ventral CA1 cells carry large, coarsely-grained ones — a gradient that maps onto the precision-generalisation trade-off in spatial cognition
Verification¶
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Registry ID ref:1866ca4247a8 · see in the full table