Reverberating spontaneous synchronized brain activity is believed to play an important role in neural information processing. Whether and how external stimuli can influence this spontaneous activity is poorly understood. Because periodic synchronized network activity is also prominent in in vitro neuronal cultures, we used cortical cultures grown on multielectrode arrays to examine how spontaneous activity is affected by external stimuli. Spontaneous network activity before and after low-frequency electrical stimulation was quantified in several ways. Our results show that the initially stable pattern of stereotypical spontaneous activity was transformed into another activity pattern that remained stable for at least 1 h. The transformation...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
Learning, or more generally, plasticity may be studied using cultured networks of rat cortical neuro...
We studied the changes in activity of neuronal networks (±50000 cells) cultured on multi electrode a...
AbstractReverberating spontaneous synchronized brain activity is believed to play an important role ...
Cultures of dissociated cortical neurons represent a powerful trade-off between more realistic exper...
Networks of neonatal cortical neurons, cultured on multi electrode arrays (MEAs) exhibit spontaneous...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
We are investigating whether often repeated firing patterns can rewire the connections in a neuronal...
In the absence of external stimuli, the nervous system exhibits a spontaneous electrical activity wh...
Abstract Spontaneous firing activity in dissociated rat cortical tissue cultured in vitro shows high...
During the first few weeks in vitro, cultured neuronal networks exhibit spontaneous bursts of action...
What changes in our brain when we learn? This is perhaps the most intriguing question of science in ...
Learning, or more generally, plasticity may be studied using cultured networks of rat cortical neuro...
What changes in our brain when we learn? This is perhaps the most intriguing question of science in ...
<div><p>Cortical oscillations play a fundamental role in organizing large-scale functional brain net...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
Learning, or more generally, plasticity may be studied using cultured networks of rat cortical neuro...
We studied the changes in activity of neuronal networks (±50000 cells) cultured on multi electrode a...
AbstractReverberating spontaneous synchronized brain activity is believed to play an important role ...
Cultures of dissociated cortical neurons represent a powerful trade-off between more realistic exper...
Networks of neonatal cortical neurons, cultured on multi electrode arrays (MEAs) exhibit spontaneous...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
We are investigating whether often repeated firing patterns can rewire the connections in a neuronal...
In the absence of external stimuli, the nervous system exhibits a spontaneous electrical activity wh...
Abstract Spontaneous firing activity in dissociated rat cortical tissue cultured in vitro shows high...
During the first few weeks in vitro, cultured neuronal networks exhibit spontaneous bursts of action...
What changes in our brain when we learn? This is perhaps the most intriguing question of science in ...
Learning, or more generally, plasticity may be studied using cultured networks of rat cortical neuro...
What changes in our brain when we learn? This is perhaps the most intriguing question of science in ...
<div><p>Cortical oscillations play a fundamental role in organizing large-scale functional brain net...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
Learning, or more generally, plasticity may be studied using cultured networks of rat cortical neuro...
We studied the changes in activity of neuronal networks (±50000 cells) cultured on multi electrode a...