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Updated: Feb 16, 2026

Novel Object Recognition Test for the Investigation of Learning and Memory in Mice
Published on: August 30, 2017
Temporal trajectories of novel object recognition performance in mice exposed to intermittent hypoxia
David Gozal1, Abdelnaby Khalyfa2, Zhuanghong Qiao2
1Section of Pediatric Sleep Medicine, Dept of Pediatrics, Pritzker School of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA dgozal@uchicago.edu.
Abstract:
Intermittent hypoxia is one of the major perturbations of sleep-disordered breathing and has been causally implicated in neurocognitive deficits. However, the reversibility of such deficits is unclear.Male C57BL/6J mice were exposed to either intermittent hypoxia or room air for 3-240 days, and then half were randomly selected and allowed to recover in normoxic conditions for the same duration of the previous exposure. A novel object recognition (NOR) test was performed.NOR performance was stable over time in room air. Intermittent hypoxia induced significant reductions in recognition index that progressed over the first 45 days and stabilised thereafter. Normoxic recovery of recognition index was essentially complete and indistinguishable from room air in mice exposed to shorter intermittent hypoxia times (<90 days). However, significant residual deficits emerged after normoxic recovery following prolonged intermittent hypoxia exposures (p<0.01). In addition, gradual attenuation of the magnitude of recovery in recognition index occurred with increasingly longer intermittent hypoxia exposures (MANOVA p<0.0001).Intermittent hypoxia during the resting period reduces NOR performance in a time-dependent fashion. Reversal of NOR performance deficits is unlikely after prolonged intermittent hypoxia duration. These findings suggest that early recognition of sleep apnoea and effective treatment are critical for restoration of the adverse cognitive effects of the disease.
Insights
Intermittent hypoxia from sleep apnea impairs cognitive function over time. Recovery is possible for short exposures, but prolonged intermittent hypoxia leads to lasting neurocognitive deficits.
Area of Science:
- Neuroscience
- Sleep Medicine
- Respiratory Physiology
Background:
- Sleep-disordered breathing, particularly intermittent hypoxia, is linked to neurocognitive deficits.
- The reversibility of these hypoxia-induced cognitive impairments remains largely unknown.
Purpose of the Study:
- To investigate the time-dependent effects of intermittent hypoxia on neurocognitive function.
- To determine the reversibility of these deficits following normoxic recovery.
Main Methods:
- Male C57BL/6J mice were exposed to intermittent hypoxia or room air for 3-240 days.
- Cognitive function was assessed using a novel object recognition (NOR) test.
- Mice underwent normoxic recovery periods matched to their prior exposure duration.
Main Results:
- Intermittent hypoxia progressively reduced NOR performance, stabilizing after 45 days.
- Full cognitive recovery was observed after shorter exposures (<90 days).
- Prolonged intermittent hypoxia resulted in significant residual cognitive deficits, with recovery diminishing over time.
Conclusions:
- Intermittent hypoxia impairs neurocognitive function in a time-dependent manner.
- Cognitive deficits from prolonged intermittent hypoxia are not fully reversible.
- Early diagnosis and treatment of sleep apnea are crucial to prevent persistent cognitive impairment.

