Astrocytic Ca2+ signaling has been intensively studied in health and disease but has not been quantified during natural sleep. Here, we employ an activity-based algorithm to assess astrocytic Ca2+ signals in the neocortex of awake and naturally sleeping mice while monitoring neuronal Ca2+ activity, brain rhythms and behavior. We show that astrocytic Ca2+ signals exhibit distinct features across the sleep-wake cycle and are reduced during sleep compared to wakefulness. Moreover, an increase in astrocytic Ca2+ signaling precedes transitions from slow wave sleep to wakefulness, with a peak upon awakening exceeding the levels during whisking and locomotion. Finally, genetic ablation of an important astrocytic Ca2+ signaling pathway impairs slow...
Our brain consists of several cell types, where astrocytes and neurons are the most abundant ones. N...
Integrated within neural circuits, astrocytes have recently been shown to modulate brain rhythms tho...
Astrocytes exist throughout the CNS and affect neural circuits and behavior through intracellular Ca...
Astrocytic Ca2+ signaling has been intensively studied in health and disease but has not been quanti...
Rapid eye movement (REM) sleep onset is triggered by disinhibition of cholinergic neurons in the pon...
Neural activity is diverse, and varies depending on brain regions and sleep/wakefulness states. Howe...
Sleep shapes cortical network activity, fostering global homeostatic down-regulation of excitability...
Non-rapid eye movement (NREM) sleep, characterized by slow-wave electrophysiological activity, under...
Sleep is an important of our daily routine; in fact, humans spend 1/3 of their day sleeping. Indeed,...
Sleep is critical for the survival of all animals and serves many vital functions throughout the bod...
Slow wave activity (SWA) is a characteristic brain oscillation in sleep and quiet wakefulness. Altho...
The detailed molecular mechanisms underlying the regulation of sleep duration in mammals are still e...
Epileptic seizures are associated with increased astrocytic Ca2+ signaling, but the fine spatiotempo...
Calcium is a critical second messenger in neurons that contributes to learning and memory, but how t...
Low-threshold (T-type) Ca(2+) channels encoded by the Ca(V)3 genes endow neurons with oscillatory pr...
Our brain consists of several cell types, where astrocytes and neurons are the most abundant ones. N...
Integrated within neural circuits, astrocytes have recently been shown to modulate brain rhythms tho...
Astrocytes exist throughout the CNS and affect neural circuits and behavior through intracellular Ca...
Astrocytic Ca2+ signaling has been intensively studied in health and disease but has not been quanti...
Rapid eye movement (REM) sleep onset is triggered by disinhibition of cholinergic neurons in the pon...
Neural activity is diverse, and varies depending on brain regions and sleep/wakefulness states. Howe...
Sleep shapes cortical network activity, fostering global homeostatic down-regulation of excitability...
Non-rapid eye movement (NREM) sleep, characterized by slow-wave electrophysiological activity, under...
Sleep is an important of our daily routine; in fact, humans spend 1/3 of their day sleeping. Indeed,...
Sleep is critical for the survival of all animals and serves many vital functions throughout the bod...
Slow wave activity (SWA) is a characteristic brain oscillation in sleep and quiet wakefulness. Altho...
The detailed molecular mechanisms underlying the regulation of sleep duration in mammals are still e...
Epileptic seizures are associated with increased astrocytic Ca2+ signaling, but the fine spatiotempo...
Calcium is a critical second messenger in neurons that contributes to learning and memory, but how t...
Low-threshold (T-type) Ca(2+) channels encoded by the Ca(V)3 genes endow neurons with oscillatory pr...
Our brain consists of several cell types, where astrocytes and neurons are the most abundant ones. N...
Integrated within neural circuits, astrocytes have recently been shown to modulate brain rhythms tho...
Astrocytes exist throughout the CNS and affect neural circuits and behavior through intracellular Ca...