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Updated: Jul 6, 2025

Infant Auditory Processing and Event-related Brain Oscillations
Published on: July 1, 2015
DELTA-RHYTHMIC ACTIVITY IN THE MEDULLA DEVELOPS COINCIDENT WITH CORTICAL DELTA IN SLEEPING INFANT RATS
Midha Ahmad1, Jangjin Kim2, Brett Dwyer1
1Department of Psychological & Brain Sciences, University of Iowa, Iowa City, IA 52242, USA.
Insights
Researchers discovered sleep-dependent rhythmic neural activity in the rat medulla, phase-locked to cortical delta rhythms. This finding reveals the brainstem
Area of Science:
- Neuroscience
- Developmental Biology
- Sleep Research
Background:
- Active sleep dominates early development, transitioning to quiet sleep.
- Cortical delta rhythm (0.5-4 Hz) emerges around postnatal day 12 (P12) in rats, coinciding with increased quiet sleep.
- The parafacial zone (PZ), a medullary structure, is implicated in regulating quiet sleep in adult mammals.
Approach:
- Recorded neural activity in the rat parafacial zone (PZ) at postnatal days 10 (P10) and P12.
- Assessed developmental changes in PZ activity relative to cortical delta rhythm emergence.
- Investigated the phase-locking of PZ activity to cortical delta, respiration, and the effect of olfactory bulb removal.
Key Points:
- Contrary to predictions, PZ exhibited sleep-dependent rhythmic spiking with intervening silence during quiet sleep, phase-locked to a local delta rhythm.
- PZ delta rhythm became coherent with cortical delta at P12 but not P10, and was phase-locked to respiration.
- Olfactory bulb disconnection did not affect cortical delta, suggesting respiration's influence is not mediated by nasal breathing.
Conclusions:
- The parafacial zone (PZ) displays emergent delta-rhythmic activity during early sleep development, synchronized with cortical delta.
- This medullary rhythmicity is modulated by respiration and involves GABAergic inhibition, indicated by increased parvalbumin.
- The discovery highlights the brainstem's role in generating sleep rhythms and coordinating neural activity across the developing brain.
Abstract:
In early development, active sleep is the predominant sleep state before it is supplanted by quiet sleep. In rats, the developmental increase in quiet sleep is accompanied by the sudden emergence of the cortical delta rhythm (0.5-4 Hz) around postnatal day 12 (P12). We sought to explain the emergence of cortical delta by assessing developmental changes in the activity of the parafacial zone (PZ), a medullary structure thought to regulate quiet sleep in adults. We recorded from PZ in P10 and P12 rats and predicted an age-related increase in neural activity during increasing periods of delta-rich cortical activity. Instead, during quiet sleep we discovered sleep-dependent rhythmic spiking activity-with intervening periods of total silence-phase-locked to a local delta rhythm. Moreover, PZ and cortical delta were coherent at P12, but not at P10. PZ delta was also phase-locked to respiration, suggesting sleep-dependent modulation of PZ activity by respiratory pacemakers in the ventral medulla. Disconnecting the main olfactory bulbs from the cortex did not diminish cortical delta, indicating that the influence of respiration on delta at this age is not mediated indirectly through nasal breathing. Finally, we observed an increase in parvalbumin-expressing terminals in PZ across these ages, supporting a role for GABAergic inhibition in PZ's rhythmicity. The discovery of delta-rhythmic neural activity in the medulla-when cortical delta is also emerging-opens a new path to understanding the brainstem's role in regulating sleep and synchronizing rhythmic activity throughout the brain.
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