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1.
Nat Commun ; 15(1): 5968, 2024 Jul 16.
Article in English | MEDLINE | ID: mdl-39013846

ABSTRACT

Reorientation, the process of regaining one's bearings after becoming lost, requires identification of a spatial context (context recognition) and recovery of facing direction within that context (heading retrieval). We previously showed that these processes rely on the use of features and geometry, respectively. Here, we examine reorientation behavior in a task that creates contextual ambiguity over a long timescale to demonstrate that male mice learn to combine both featural and geometric cues to recover heading. At the neural level, most CA1 neurons persistently align to geometry, and this alignment predicts heading behavior. However, a small subset of cells remaps coherently in a context-sensitive manner, which serves to predict context. Efficient heading retrieval and context recognition correlate with rate changes reflecting integration of featural and geometric information in the active ensemble. These data illustrate how context recognition and heading retrieval are coded in CA1 and how these processes change with experience.


Subject(s)
CA1 Region, Hippocampal , Cues , Animals , Male , Mice , CA1 Region, Hippocampal/physiology , CA1 Region, Hippocampal/cytology , Neurons/physiology , Orientation, Spatial/physiology , Mice, Inbred C57BL , Hippocampus/physiology , Hippocampus/cytology , Recognition, Psychology/physiology , Orientation/physiology , Space Perception/physiology
2.
Res Sq ; 2023 Mar 31.
Article in English | MEDLINE | ID: mdl-37034652

ABSTRACT

Reorientation, the process of regaining one's bearings after becoming lost, requires identification of a spatial context (context recognition) and recovery of heading direction within that context (heading retrieval). We previously showed that these processes rely on the use of features and geometry, respectively. Here, we examine reorientation behavior in a task that creates contextual ambiguity over a long timescale to demonstrate that mice learn to combine both featural and geometric cues to recover heading with experience. At the neural level, most CA1 neurons persistently align to geometry, and this alignment predicts heading behavior. However, a small subset of cells shows feature-sensitive place field remapping, which serves to predict context. Efficient heading retrieval and context recognition require integration of featural and geometric information in the active network through rate changes. These data illustrate how context recognition and heading retrieval are coded in CA1 and how these processes change with experience.

3.
Cell Rep ; 35(11): 109234, 2021 06 15.
Article in English | MEDLINE | ID: mdl-34133936

ABSTRACT

Poor sleep quality is associated with age-related cognitive decline, and whether reversal of these alterations is possible is unknown. In this study, we report how sleep deprivation (SD) affects hippocampal representations, sleep patterns, and memory in young and old mice. After training in a hippocampus-dependent object-place recognition (OPR) task, control animals sleep ad libitum, although experimental animals undergo 5 h of SD, followed by recovery sleep. Young controls and old SD mice exhibit successful OPR memory, whereas young SD and old control mice are impaired. Successful performance is associated with two cellular phenotypes: (1) "context" cells, which remain stable throughout training and testing, and (2) "object configuration" cells, which remap when objects are introduced to the context and during testing. Additionally, effective memory correlates with spindle counts during non-rapid eye movement (NREM)/rapid eye movement (REM) sigma transitions. These results suggest SD may serve to ameliorate age-related memory deficits and allow hippocampal representations to adapt to changing environments.


Subject(s)
Aging/pathology , Memory/physiology , Place Cells/pathology , Sleep Deprivation/physiopathology , Sleep/physiology , Animals , Bayes Theorem , Behavior, Animal , Corticosterone/blood , Delta Rhythm/physiology , Hippocampus/pathology , Hippocampus/physiopathology , Male , Mice, Inbred C57BL , Sleep Deprivation/blood , Task Performance and Analysis , Theta Rhythm/physiology
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