Hippocampal spatial representations exhibit a hyperbolic geometry that expands with experience

Daily experience suggests that we perceive distances near us linearly. However, the actual geometry of spatial representation in the brain is unknown. Here we report that neurons in the CA1 region of rat hippocampus that mediate spatial perception represent space according to a non-linear hyperbolic geometry. This geometry uses an exponential scale and yields greater positional information than a linear scale. We found that the size of the representation matches the optimal predictions for the number of CA1 neurons. The representations also dynamically expanded proportional to the logarithm of time that the animal spent exploring the environment, in correspondence with the maximal mutual information that can be received. The dynamic changes tracked even small variations due to changes in the running speed of the animal. These results demonstrate how neural circuits achieve efficient representations using dynamic hyperbolic geometry.

Dynamics of theHippocampal Ensemble…Dynamics of the Hippocampal Ensemble Code for SpaceMicrostructure of aspatial map in the…Microstructure of a spatial map in the entorhinal cortexUnmasking the CA1Ensemble Place Code by…Unmasking the CA1 Ensemble Place Code by Exposures to Small and Large Environments: More Place Cells and Multiple, Irregularly Arranged, and Expanded Place Fields in the Larger SpaceFinite Scale of SpatialRepresentation in the…Finite Scale of Spatial Representation in the HippocampusNetwork DynamicsUnderlying the Formatio…Network Dynamics Underlying the Formation of Sparse, Informative Representations in the HippocampusLarge environmentsreveal the statistical…Large environments reveal the statistical structure governing hippocampal representationsBehavioral time scalesynaptic plasticity…Behavioral time scale synaptic plasticity underlies CA1 place fieldsHyperbolic geometry ofthe olfactory spaceHyperbolic geometry of the olfactory spaceAn argument forhyperbolic geometry in…An argument for hyperbolic geometry in neural circuitsMultiscalerepresentation of very…Multiscale representation of very large environments in the hippocampus of flying batsToroidal topology ofpopulation activity in…Toroidal topology of population activity in grid cellsGeometry of abstractlearned knowledge in th…Geometry of abstract learned knowledge in the hippocampusQuantifying thedistribution of feature…Quantifying the distribution of feature values over data represented in arbitrary dimensional spacesMulti-scale goaldistance representation…Multi-scale goal distance representations in human hippocampus during virtual spatial navigationGrid cells, bordercells, and discrete…Grid cells, border cells, and discrete complex analysisTracking the topology ofneural manifolds across…Tracking the topology of neural manifolds across populationsThe Dimensions ofdimensionalityThe Dimensions of dimensionalityAdaptive data embeddingfor curved spacesAdaptive data embedding for curved spacesImAge quantitates agingand rejuvenationImAge quantitates aging and rejuvenationHippocampal neuronalactivity is aligned wit…Hippocampal neuronal activity is aligned with action plansIntegration of cognitivetasks into artificial…Integration of cognitive tasks into artificial general intelligence test for large modelsHyperbolic Deep Learningin Computer Vision: A…Hyperbolic Deep Learning in Computer Vision: A SurveyTopologicalNeuroscience: Linking…Topological Neuroscience: Linking Circuits to FunctionUniversal statistics ofhippocampal place field…Universal statistics of hippocampal place fields across species and dimensionalitiesHippocampal spatialrepresentations exhibit…Hippocampal spatial representations exhibit a hyperbolic geometry that expands with experienceEarlier referencesFocus paperCiting papersOlderNewer

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