Sleep has been hypothesized to rebalance overall synaptic strength after ongoing learning during waking leads to net synaptic potentiation. If so, because synaptic strength and size are correlated, synapses on average should be larger after wake and smaller after sleep. This prediction was recently confirmed in mouse cerebral cortex using serial block-face electron microscopy (SBEM). However, whether these findings extend to other brain regions is unknown. Moreover, sleep deprivation by gentle handling was reported to produce hippocampal spine loss, raising the question of whether synapse size and number are differentially affected by sleep and waking. Here we applied SBEM to measure axon-spine interface (ASI), the contact area between pre-...
Background: Astrocytes can mediate neurovascular coupling, modulate neuronal excitability, and promo...
It is well documented that sleep contributes to memory consolidation and it is also accepted that lo...
Sleep is critical for memory consolidation, yet the mechanisms which underlie this process are not w...
Sleep has been hypothesized to rebalance overall synaptic strength after ongoing learning during wak...
In adolescent and adult brains several molecular, electrophysiological, and ultrastructural measures...
Multiple evidence in rodents shows that the strength of excitatory synapses in the cerebral cortex a...
There is molecular, electrophysiological, and ultrastructural evidence that a net increase in synapt...
It is assumed that synaptic strengthening and weakening balance throughout learning to avoid runaway...
Sleep-dependent synaptic plasticity is crucial for optimal cognition. However, establishing the dire...
Dendritic spines are the major sites of synaptic transmission in the central nervous system. Alterat...
Dendritic spines are the major sites of synaptic transmission in the central nervous system. Alterat...
Understanding how circadian rhythms and vigilance states affect memory and synaptic plasticity is of...
Brief periods of sleep loss have long-lasting consequences such as impaired memory consolidation. St...
Background: Astrocytes can mediate neurovascular coupling, modulate neuronal excitability, and promo...
It is well documented that sleep contributes to memory consolidation and it is also accepted that lo...
Sleep is critical for memory consolidation, yet the mechanisms which underlie this process are not w...
Sleep has been hypothesized to rebalance overall synaptic strength after ongoing learning during wak...
In adolescent and adult brains several molecular, electrophysiological, and ultrastructural measures...
Multiple evidence in rodents shows that the strength of excitatory synapses in the cerebral cortex a...
There is molecular, electrophysiological, and ultrastructural evidence that a net increase in synapt...
It is assumed that synaptic strengthening and weakening balance throughout learning to avoid runaway...
Sleep-dependent synaptic plasticity is crucial for optimal cognition. However, establishing the dire...
Dendritic spines are the major sites of synaptic transmission in the central nervous system. Alterat...
Dendritic spines are the major sites of synaptic transmission in the central nervous system. Alterat...
Understanding how circadian rhythms and vigilance states affect memory and synaptic plasticity is of...
Brief periods of sleep loss have long-lasting consequences such as impaired memory consolidation. St...
Background: Astrocytes can mediate neurovascular coupling, modulate neuronal excitability, and promo...
It is well documented that sleep contributes to memory consolidation and it is also accepted that lo...
Sleep is critical for memory consolidation, yet the mechanisms which underlie this process are not w...