Brain state-dependent cortico-hippocampal network dynamics are modulated by postnatal stimuli
Shinohara, Y.; Koketsu, S.; Hirase, H.; Ueki, T.
Show abstract
Neurons in the cerebral cortex and hippocampus discharge synchronously in a brain state-dependent manner to transfer information. Published studies have highlighted the temporal coordination of neuronal activities between the hippocampus and a cortical area, however, how the spatial extent of cortex activity relates to hippocampal activity remains largely unknown. We imaged macroscopic cortical activity while recording hippocampal local field potentials in unanesthetized GCaMP-expressing transgenic mice. We found that cortical activity elevates before and after hippocampal sharp wave ripples (SWR). SWR-associated cortical activities occurred predominantly in vision-related regions including visual, retrosplenial and prefrontal cortex. While pre-SWR cortical activities were frequently observed in awake and sleep states, post-SWR cortical activity decreased significantly in sleep. During hippocampal theta oscillation states, phase-locked oscillations of calcium activity was observed throughout the entire cortex state. Environmental effects on cortico-hippocampal dynamics were also assessed by comparing mice reared in an enriched environment (ENR) or under isolated conditions (ISO). In both SWR and theta oscillations, mice reared in an isolated condition exhibited clearer brain state-dependent dynamics than those reared in an enriched environment. Our data demonstrate that the cortex and hippocampus exhibit heterogeneous activity patterns that characterize brain states, and postnatal experience plays a significant role in modulating these patterns. Significant StatementThe hippocampus is a center for memory formation. However, the memory formed in the hippocampus is not stored forever, but gradually transferred into the cerebral cortex. As an underlying mechanism, phase-locked synchronized activities between the cortex and hippocampus has been hypothesized. However, spatio-temporal dynamics between hippocampus and whole cortical areas remained mostly unknown. We measured cortical calcium activities with hippocampal electroencephalogram (EEG) simultaneously, and found that the activities of widespread cortical areas are temporally associated with hippocampal EEG. The cortico-hippocampal dynamics is primarily regulated by animal awake/sleep state. Even if similar EEG patters were observed, temporal dynamics between the cortex and hippocampus exhibit distinct patterns between awake and sleep period. In addition, animals postnatal experience modulates the dynamics.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Region-specific and state-dependent astrocyte Ca2+ dynamics during the sleep-wake cycle in mice 97%
- Relating pupil diameter and blinking to cortical activity and hemodynamics across arousal states 97%
- Sleep differentially affects early and late neuronal responses to sounds in auditory and perirhinal cortices 97%
Similar papers in this journal
- Impaired state-dependent potentiation of GABAergic synaptic currents triggers seizures in an idiopathic generalized epilepsy model 95%
- Sleep leads to system-wide neural changes independent of allo- and egocentric spatial training in humans and rats 94%
- Preoptic area controls sleep-related seizure onset in a genetic epilepsy mouse model 94%
Similar papers in this journal
- State-dependent pontine ensemble dynamics and interactions with cortex across sleep states 97%
- Cortico-autonomic local arousals and heightened somatosensory arousability during NREM sleep of mice in neuropathic pain 95%
- Inhibition is a prevalent mode of activity in the neocortex around awake hippocampal ripples 95%
Similar papers in this journal
- Theta-gamma coupling depends on breathing rate 96%
- Vesicular GABA-transporter neurons in the zona incerta are maximally active during non rapid-eye movement (NREM) and rapid-eye movement (REM) sleep 96%
- The relationship between fasting-induced torpor,sleep and wakefulness in the laboratory mouse 94%
Similar papers in this journal
- Behavioral and cortical arousal from sleep, muscimol-induced coma, and anesthesia by direct optogenetic stimulation of cortical neurons 96%
- Circuit mechanism underlying fragmented sleep and memory deficits in 16p11.2 deletion mouse model of autism 96%
- CBD lengthens sleep, shortens ripples and leads to intact simple but worse cumulative memory 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.