Postnatal maturation of in vivo membrane potentialdynamics during hippocampal ripples
Noguchi, A.; Ikegaya, Y.
Show abstract
Sharp-wave ripples (SWRs) are transient high-frequency oscillations of local field potentials (LFPs) in the hippocampus and play a critical role in memory consolidation. During SWRs, CA1 pyramidal cells exhibit rapid spike sequences that often replay the sequential activity that occurred during behavior. This temporally organized firing activity gradually emerges during two weeks after the eye opening; however, it remains unclear how the organized spikes during SWRs mature at the intracellular membrane potential (Vm) level. Here, we recorded the Vm of CA1 pyramidal cells simultaneously with hippocampal LFPs from immature mice after the developmental emergence of SWRs. On postnatal days 16-17, Vm dynamics around SWRs were premature, characterized by prolonged depolarizations without either pre- or post-SWR hyperpolarization. The biphasic hyperpolarizations, which are a typical feature of adult SWR-relevant Vm, formed by approximately postnatal day 30. This Vm maturation was associated with an increase in SWR-associated inhibitory inputs to pyramidal cells. Thus, the development of SWR-relevant inhibition restricts the temporal windows for spikes of pyramidal cells and allows CA1 pyramidal cells to organize their spike sequences during SWRs. Significance statementSharp-wave ripples (SWRs) are prominent hippocampal oscillations and play a critical role in memory consolidation. During SWRs, hippocampal neurons synchronously emit spikes with organized temporal patterns. This temporal structure of spikes during SWRs develops during the third and fourth postnatal weeks, but the underlying mechanisms are not well-understood. Here, we recorded in vivo membrane potentials from hippocampal neurons in premature mice and suggest that the maturation of SWR-associated inhibition enables hippocampal neurons to produce precisely controlled spike times during SWRs.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Inhibitory parvalbumin basket cell activity is selectively reduced during hippocampal sharp wave ripples in a mouse model of familial Alzheimer's disease 97%
- Complex synaptic and intrinsic interactions disrupt input/output functions in the hippocampus of Scn1b knockout mice 96%
- Kv4.1, a key ion channel for low frequency firing of dentate granule cells, is crucial for pattern separation 96%
Similar papers in this journal
- Emergence of Non-Canonical Parvalbumin-Containing Interneurons in Hippocampus of a Murine Model of Type I Lissencephaly 97%
- Local circuit allowing hypothalamic control of hippocampal area CA2 activity and consequences for CA1 96%
- The rapid developmental rise of somatic inhibition disengages hippocampal dynamics from self-motion 96%
Similar papers in this journal
- Bursting mitral cells time the oscillatory coupling between olfactory bulb and entorhinal networks in neonatal mice 97%
- Impaired dendritic spike generation in the Fragile X prefrontal cortex is due to loss of dendritic sodium channels 95%
- Cation-chloride cotransporters and the polarity of GABA signaling in mouse hippocampal parvalbumin interneurons 95%
Similar papers in this journal
- Impaired state-dependent potentiation of GABAergic synaptic currents triggers seizures in an idiopathic generalized epilepsy model 96%
- The entorhinal cortical alvear pathway differentially excites interneuron subtypes in hippocampal CA1 96%
- Early retinal deprivation crossmodally alters nascent subplate circuits and activity in the auditory cortex during the precritical period 96%
Similar papers in this journal
- Examination of diurnal variation and sex differences in hippocampal neurophysiology and spatial memory 96%
- Impaired reliability and precision of spiking in adults but not juveniles in a mouse model of Fragile X Syndrome 96%
- Modulation of hippocampal sharp-wave ripples by behavioral states and body movements in head-fixed rodents 96%
"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.