Functional architecture of intracellular oscillations in hippocampal dendrites.
Zhenrui LiaoKevin C GonzalezDeborah M LiCatalina M YangDonald HolderNatalie E McClainGuofeng ZhangStephen W EvansMariya ChavarhaJane YiChristopher D MakinsonMichael Z LinAttila LosonczyAdrian NegreanPublished in: bioRxiv : the preprint server for biology (2024)
Fast electrical signaling in dendrites is central to neural computations that support adaptive behaviors. Conventional techniques lack temporal and spatial resolution and the ability to track underlying membrane potential dynamics present across the complex three-dimensional dendritic arbor in vivo . Here, we perform fast two-photon imaging of dendritic and somatic membrane potential dynamics in single pyramidal cells in the CA1 region of the mouse hippocampus during awake behavior. We study the dynamics of subthreshold membrane potential and suprathreshold dendritic events throughout the dendritic arbor in vivo by combining voltage imaging with simultaneous local field potential recording, post hoc morphological reconstruction, and a spatial navigation task. We systematically quantify the modulation of local event rates by locomotion in distinct dendritic regions and report an advancing gradient of dendritic theta phase along the basal-tuft axis, then describe a predominant hyperpolarization of the dendritic arbor during sharp-wave ripples. Finally, we find spatial tuning of dendritic representations dynamically reorganizes following place field formation. Our data reveal how the organization of electrical signaling in dendrites maps onto the anatomy of the dendritic tree across behavior, oscillatory network, and functional cell states.
Keyphrases
- high resolution
- working memory
- stem cells
- induced apoptosis
- single cell
- dna methylation
- oxidative stress
- genome wide
- gene expression
- cell proliferation
- cell death
- signaling pathway
- copy number
- endoplasmic reticulum stress
- cell cycle arrest
- risk assessment
- blood brain barrier
- brain injury
- single molecule
- cerebral ischemia
- prefrontal cortex
- deep learning
- cognitive impairment
- fluorescent probe
- living cells
- subarachnoid hemorrhage
- data analysis