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Updated: Jun 8, 2026

A Lateralized Odor Learning Model in Neonatal Rats for Dissecting Neural Circuitry Underpinning Memory Formation
Published on: August 18, 2014
The neurobiology of infant maternal odor learning
C Raineki1, A Pickenhagen, T L Roth
1Nathan Kline Institute for Psychiatric Research, Orangeburg, NY 10962, USA. craineki@nki.rfmh.org
Insights
Infant rats learn their mother's scent, which guides their behavior and attachment. A unique neural circuit, involving the olfactory bulb and locus coeruleus, supports this crucial early-life learning.
Area of Science:
- Neuroscience
- Developmental Biology
- Olfactory Learning
Background:
- Maternal odor is critical for infant rat development, influencing social behavior and attachment.
- Early olfactory learning in pups is essential for survival and bonding with the caregiver.
Purpose of the Study:
- To review research on infant rat olfactory learning and maternal odor recognition.
- To elucidate the neural mechanisms underlying caregiver odor learning and attachment in neonatal rats.
Main Methods:
- Review of studies from four independent laboratories.
- Analysis of neural and behavioral responses to maternal and learned odors.
- Examination of the role of the olfactory bulb, locus coeruleus, and amygdala.
Main Results:
- Neural and behavioral responses to natural maternal odor and learned neonatal odors are similar.
- A unique learning circuit involves the olfactory bulb for plasticity and the locus coeruleus for norepinephrine release.
- The amygdala is excluded from this infant olfactory learning circuit.
Conclusions:
- Infant rats possess a specialized learning system for caregiver odor recognition.
- This system primes pups to learn odors that promote approach behaviors and caregiver attachment.
- The olfactory bulb and locus coeruleus are key components of this unique developmental learning circuit.
Abstract:
Infant rats must learn to identify their mother's diet-dependent odor. Once learned, maternal odor controls pups' approach to the mother, their social behavior and nipple attachment. Here we present a review of the research from four different laboratories, which suggests that neural and behavioral responses to the natural maternal odor and neonatal learned odors are similar. Together, these data indicate that pups have a unique learning circuit relying on the olfactory bulb for neural plasticity and on the hyperfunctioning noradrenergic locus coeruleus flooding the olfactory bulb with norepinephrine to support the neural changes. Another important factor making this system unique is the inability of the amygdala to become incorporated into the infant learning circuit. Thus, infant rats appear to be primed in early life to learn odors that will evoke approach responses supporting attachment to the caregiver.
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