Hippocampus and retrosplenial cortex combine path integration signals for successful navigation.

scientific article published on December 2013

Hippocampus and retrosplenial cortex combine path integration signals for successful navigation. is …
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scholarly articleQ13442814

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P356DOI10.1523/JNEUROSCI.1825-13.2013
P932PMC publication ID3850045
P698PubMed publication ID24305826

P50authorMichael HasselmoQ6830994
Thackery I BrownQ58806606
Katherine R SherrillQ60167294
Robert S RossQ60167301
P2093author name stringChantal E Stern
Ugur M Erdem
P2860cites workCellular networks underlying human spatial navigationQ28206275
A fast diffeomorphic image registration algorithmQ28243996
The hippocampus as a spatial map. Preliminary evidence from unit activity in the freely-moving ratQ28250476
What does the retrosplenial cortex do?Q28260803
Dissociable retrosplenial and hippocampal contributions to successful formation of survey representations.Q48949044
Medial Parietal Cortex Encodes Perceived Heading Direction in HumansQ51035762
Convergence of head direction and place information in the CA1 region of hippocampus.Q52024387
A model of hippocampally dependent navigation, using the temporal difference learning rule.Q52028576
Neural basis of the cognitive map: path integration does not require hippocampus or entorhinal cortexQ28290087
Functional differentiation in the hippocampusQ28293360
Remembering the past and imagining the future: a neural model of spatial memory and imageryQ28302192
An automated method for neuroanatomic and cytoarchitectonic atlas-based interrogation of fMRI data setsQ29614928
Are the dorsal and ventral hippocampus functionally distinct structures?Q29619734
Navigation-associated medial parietal neurons in monkeysQ30478199
Distinct representations and theta dynamics in dorsal and ventral hippocampusQ30493263
The reorganization and reactivation of hippocampal maps predict spatial memory performanceQ30496132
Hippocampal "time cells": time versus path integrationQ30570915
Hippocampal place-cell sequences depict future paths to remembered goalsQ30576341
Human navigation that requires calculating heading vectors recruits parietal cortex in a virtual and visually sparse water maze task in fMRI.Q33652802
Topographical disorientation: a synthesis and taxonomyQ33723456
Contributions of medial temporal lobe and striatal memory systems to learning and retrieving overlapping spatial memories.Q33735137
Which way was I going? Contextual retrieval supports the disambiguation of well learned overlapping navigational routesQ34002748
Thoughts, behaviour, and brain dynamics during navigation in the real worldQ34508647
Spatial and temporal episodic memory retrieval recruit dissociable functional networks in the human brainQ36097333
Contrasting effects on path integration after hippocampal damage in humans and ratsQ36712558
An oscillatory interference model of grid cell firingQ36863655
Parahippocampal and retrosplenial contributions to human spatial navigationQ37257456
Role of the parietal cortex in long-term representation of spatial information in the rat.Q37265285
Theta rhythm and the encoding and retrieval of space and time.Q38115099
Hippocampal "time cells" bridge the gap in memory for discontiguous eventsQ38267134
"I have often walked down this street before": fMRI studies on the hippocampus and other structures during mental navigation of an old environmentQ39695378
Neural ensembles in CA3 transiently encode paths forward of the animal at a decision point.Q40156152
Internally generated cell assembly sequences in the rat hippocampus.Q41814180
A goal-directed spatial navigation model using forward trajectory planning based on grid cellsQ42051157
A navigational guidance system in the human brainQ42058479
Functional split between parietal and entorhinal cortices in the rat.Q42637780
A model of episodic memory: mental time travel along encoded trajectories using grid cellsQ42911368
Temporally structured replay of neural activity in a model of entorhinal cortex, hippocampus and postsubiculumQ43188931
Persistent posterior and transient anterior medial temporal lobe activity during navigationQ44034644
Human neural systems underlying rigid and flexible forms of allocentric spatial representationQ46556935
Differential recruitment of the hippocampus, medial prefrontal cortex, and the human motion complex during path integration in humans.Q46898178
Where am I now? Distinct roles for parahippocampal and retrosplenial cortices in place recognition.Q48144268
Anterior hippocampus and goal-directed spatial decision making.Q48146652
The well-worn route and the path less traveled: distinct neural bases of route following and wayfinding in humansQ48368621
Dissociable neural circuits for encoding and retrieval of object locations during active navigation in humans.Q48431036
The human parahippocampal cortex subserves egocentric spatial learning during navigation in a virtual mazeQ48484608
Dorsal/ventral hippocampus, fornix, and conditioned place preferenceQ48883952
Modeling geometric deformations in EPI time seriesQ48915784
P433issue49
P407language of work or nameEnglishQ1860
P304page(s)19304-19313
P577publication date2013-12-01
P1433published inJournal of NeuroscienceQ1709864
P1476titleHippocampus and retrosplenial cortex combine path integration signals for successful navigation
P478volume33

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cites work (P2860)
Q35684043A high-resolution study of hippocampal and medial temporal lobe correlates of spatial context and prospective overlapping route memory
Q26849645Assessing spatial learning and memory in rodents
Q35665955Bridging the gap between spatial and mnemonic views of the hippocampal formation
Q91193684Category specificity in the medial temporal lobe: A systematic review
Q58765885Cholinergic modulation of spatial learning, memory and navigation
Q34537958Cincinnati water maze: A review of the development, methods, and evidence as a test of egocentric learning and memory.
Q48987511Common Neural Representations for Visually Guided Reorientation and Spatial Imagery
Q51762028Compromised Grid-Cell-like Representations in Old Age as a Key Mechanism to Explain Age-Related Navigational Deficits.
Q40970662Contracted time and expanded space: The impact of circumnavigation on judgements of space and time.
Q38382886Current questions on space and time encoding
Q36194055Dietary 2'-Fucosyllactose Enhances Operant Conditioning and Long-Term Potentiation via Gut-Brain Communication through the Vagus Nerve in Rodents
Q37081304Diminished Quality of Life and Increased Brain Functional Connectivity in Patients with Hypothyroidism After Total Thyroidectomy
Q35213466Direct reactivation of a coherent neocortical memory of context
Q50140724Dissociating Landmark Stability from Orienting Value Using Functional Magnetic Resonance Imaging
Q90389277Distinct representations of spatial and categorical relationships across human scene-selective cortex
Q48825540Environmental layout complexity affects neural activity during navigation in humans.
Q28601777Estimation of self-motion duration and distance in rodents
Q93133559Evidence for allocentric boundary and goal direction information in the human entorhinal cortex and subiculum
Q34193408Examining the role of the temporo-parietal network in memory, imagery, and viewpoint transformations
Q57176563Extrahippocampal Contributions to Age-Related Changes in Spatial Navigation Ability
Q37558413Familiarity expands space and contracts time
Q88102051Flexible egocentric and allocentric representations of heading signals in parietal cortex
Q45033712Functional correlates of likelihood and prior representations in a virtual distance task
Q49046957Genetic Variation in S100B Modulates Neural Processing of Visual Scenes in Han Chinese.
Q36761590Grid-like Processing of Imagined Navigation
Q47833898Hippocampal CA1 activity correlated with the distance to the goal and navigation performance.
Q64258904Hippocampal and Retrosplenial Goal Distance Coding After Long-term Consolidation of a Real-World Environment
Q33567882Individual Differences in Human Path Integration Abilities Correlate with Gray Matter Volume in Retrosplenial Cortex, Hippocampus, and Medial Prefrontal Cortex
Q60046845Learned Spatial Schemas and Prospective Hippocampal Activity Support Navigation After One-Shot Learning
Q83230569Mapping sequence structure in the human lateral entorhinal cortex
Q33573361Medial temporal lobe roles in human path integration
Q55208778Neural Codes for One's Own Position and Direction in a Real-World "Vista" Environment.
Q50014892Neural mechanisms of navigation involving interactions of cortical and subcortical structures.
Q64258130Path integration maintains spatial periodicity of grid cell firing in a 1D circular track
Q83229384Processing of different spatial scales in the human brain
Q38855374Prospective representation of navigational goals in the human hippocampus
Q50553660Reduced grid-cell-like representations in adults at genetic risk for Alzheimer's disease.
Q55533792Repetitive transcranial magnetic stimulation reveals a causal role of the human precuneus in spatial updating.
Q59136347Resting State Connectivity Between Medial Temporal Lobe Regions and Intrinsic Cortical Networks Predicts Performance in a Path Integration Task
Q39544617Retrosplenial Cortical Neurons Encode Navigational Cues, Trajectories and Reward Locations During Goal Directed Navigation
Q28264587Retrosplenial cortex maps the conjunction of internal and external spaces
Q64078948Self‐reported navigation ability is associated with optic flow‐sensitive regions’ functional connectivity patterns during visual path integration
Q26995862Solving the detour problem in navigation: a model of prefrontal and hippocampal interactions
Q37555032Structural differences in hippocampal and prefrontal gray matter volume support flexible context-dependent navigation ability.
Q55513723The Complex Nature of Hippocampal-Striatal Interactions in Spatial Navigation.
Q47875532The cognitive map in humans: spatial navigation and beyond
Q39178844The hippocampus and entorhinal cortex encode the path and Euclidean distances to goals during navigation.
Q48641397There and Back Again: Hippocampus and Retrosplenial Cortex Track Homing Distance during Human Path Integration.
Q38791419Time Is Not Space: Core Computations and Domain-Specific Networks for Mental Travels
Q42471961Transplanted Dentate Progenitor Cells Show Increased Survival in an Enriched Environment But Do Not Exert a Neurotrophic Effect on Spatial Memory Within 2 Weeks of Engraftment
Q26801522Using Grid Cells for Navigation
Q53828283What does the functional organization of cortico-hippocampal networks tell us about the functional organization of memory?
Q39726901Which way and how far? Tracking of translation and rotation information for human path integration

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