Hippocampal-like network dynamics underlie avian sharp wave-ripples
Ondracek, J. M.; Yeganegi, H.; Luksch, H.
Show abstract
Sharp wave ripples (SWR) represent one of the most synchronous population patterns in the mammalian brain. Although SWRs are highly conserved throughout mammalian evolution, the existence of SWRs in non-mammalian species remains controversial. We reexamined the existence of avian SWRs by recording the brain activity during sleep and under anesthesia in two species of birds, the zebra finch and the chicken. Electrophysiological recordings using silicon probes implanted in the avian telencephalon revealed highly dynamic switching between high and low delta phases during sleep. High delta phases were composed of large-amplitude, negative deflections (sharp waves) that coincided with a high frequency oscillation (ripple). Correlation analysis revealed that these events were highly synchronous and spanned a large anatomical range of the avian telencephalon. Finally, detailed spike analysis revealed that an increase in the population spiking activity coincided with the occurrence of SWRs, that this spiking activity occurred in specific sequences of spike patterns locked to the SWRs, and that the mean population spiking activity peaked prior to the trough of the negative deflection. These results provide the first evidence of avian SWRs during natural sleep and under anesthesia, and suggest that the evolutionary origin of SWR activity may precede the mammalian-sauropsid bifurcation.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Sleep differentially affects early and late neuronal responses to sounds in auditory and perirhinal cortices 97%
- Relating pupil diameter and blinking to cortical activity and hemodynamics across arousal states 97%
- Dynamic respiration-neural coupling in substantia nigra across sleep and anesthesia 97%
Similar papers in this journal
- State-dependent pontine ensemble dynamics and interactions with cortex across sleep states 98%
- A transient postnatal quiescent period precedes emergence of mature cortical dynamics 97%
- Cortico-autonomic local arousals and heightened somatosensory arousability during NREM sleep of mice in neuropathic pain 96%
Similar papers in this journal
Similar papers in this journal
- Hippocampal gamma and sharp wave/ripples mediate bidirectional interactions with cortical networks during sleep 96%
- Human deep sleep facilitates faster cerebrospinal fluid dynamics linked to brain oscillations for sleep homeostasis and memory 95%
- Electrophysiological Markers of Memory Consolidation in the Human Brain when Memories are Reactivated during Sleep 95%
Similar papers in this journal
- Sleep-like changes in neural processing emerge during sleep deprivation in early auditory cortex 96%
- Basal forebrain parvalbumin neurons mediate arousals from sleep induced by hypercarbia or auditory stimuli 95%
- Self-generated whisker movements drive state-dependent sensory input to developing barrel cortex 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.