The brain is self-writable; as the brain voluntarily adapts itself to a changing environment, the neural circuitry rearranges its functional connectivity by referring to its own activity. How the internal activity modifies synaptic weights is largely unknown, however. Here we report that spontaneous activity causes complex reorganization of synaptic connectivity without any external (or artificial) stimuli. Under physiologically relevant ionic conditions, CA3 pyramidal cells in hippocampal slices displayed spontaneous spikes with bistable slow oscillations of membrane potential, alternating between the so-called UP and DOWN states. The generation of slow oscillations did not require fast synaptic transmission, but their patterns were coordi...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
During brain development, before sensory systems become functional, neuronal networks spontaneously ...
Collective rhythmic dynamics from neurons is vital for cognitive functions such as memory formation ...
The brain is self-writable; as the brain voluntarily adapts itself to a changing environment, the ne...
Spontaneous activity fine-tunes neuronal connections in the developing brain. To explore the underly...
In the absence of external stimuli, the nervous system exhibits a spontaneous electrical activity wh...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
Long-term potentiation (LTP) is commonly used to study synaptic plasticity but the associated change...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
Collective rhythmic dynamics from neurons is vital for cognitive functions such as memory formation ...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
During brain development, before sensory systems become functional, neuronal networks spontaneously ...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
During brain development, before sensory systems become functional, neuronal networks spontaneously ...
Collective rhythmic dynamics from neurons is vital for cognitive functions such as memory formation ...
The brain is self-writable; as the brain voluntarily adapts itself to a changing environment, the ne...
Spontaneous activity fine-tunes neuronal connections in the developing brain. To explore the underly...
In the absence of external stimuli, the nervous system exhibits a spontaneous electrical activity wh...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
Long-term potentiation (LTP) is commonly used to study synaptic plasticity but the associated change...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
Collective rhythmic dynamics from neurons is vital for cognitive functions such as memory formation ...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
During brain development, before sensory systems become functional, neuronal networks spontaneously ...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
BACKGROUND: The spontaneous activity of neuronal networks has been studied in in vitro models such a...
During brain development, before sensory systems become functional, neuronal networks spontaneously ...
Collective rhythmic dynamics from neurons is vital for cognitive functions such as memory formation ...