AbstractSpontaneous neuronal activity plays an important role in the development of cortical circuitry, yet its spatio-temporal dynamics are poorly understood. Cajal-Retzius (CR) neurons in developing layer 1 are necessary for correct cortical lamination and are strategically located to coordinate early circuit activity. To characterize the spontaneous activity of CR and other layer 1 neurons during cortical development, we imaged calcium transients in populations of layer 1 neurons in hemispheres and slices from postnatal rat somatosensory neocortex. The spontaneous activity in layer 1 had complex spatio-temporal patterns. Groups of non-CR cells showed synchronous activations and formed networks of correlated neurons superimposed in the sa...
Spontaneous network activity constitutes a central theme during the development of neuronal circuitr...
AbstractThe flow of activity in the cortical microcircuitry is poorly understood. We use calcium ima...
Summary The neocortex undergoes extensive developmental growth, but how its architecture adapts to e...
Cajal-Retzius (CR) cells are among the earliest generated neurons and are thought to play a role in ...
International audienceDeveloping cortical networks generate a variety of coherent activity patterns ...
Cajal-Retzius (CR) cells are among the earliest generated neurons and are thought to play a role in ...
Neuronal activity has been shown to be essential for the proper formation of neuronal circuits, affe...
Layer 1 of the neocortex harbors a unique group of neurons that play crucial roles in synaptic integ...
Early coordinated network activity promotes the development of cortical structures. Although these e...
Layer 1 (L1) neurons, in particular Cajal–Retzius (CR) cells are among the earliest generated neuron...
A hallmark pattern of activity in developing nervous systems is spontaneous, synchronized network ac...
Cortical circuits exhibit highly dynamic and complex neural activity. Intriguingly, cortical activit...
SummarySpontaneous network activity constitutes a central theme during the development of neuronal c...
Spontaneous network activity constitutes a central theme during the development of neuronal circuitr...
doi:10.3791/3550 (2011). A hallmark pattern of activity in developing nervous systems is spontaneous...
Spontaneous network activity constitutes a central theme during the development of neuronal circuitr...
AbstractThe flow of activity in the cortical microcircuitry is poorly understood. We use calcium ima...
Summary The neocortex undergoes extensive developmental growth, but how its architecture adapts to e...
Cajal-Retzius (CR) cells are among the earliest generated neurons and are thought to play a role in ...
International audienceDeveloping cortical networks generate a variety of coherent activity patterns ...
Cajal-Retzius (CR) cells are among the earliest generated neurons and are thought to play a role in ...
Neuronal activity has been shown to be essential for the proper formation of neuronal circuits, affe...
Layer 1 of the neocortex harbors a unique group of neurons that play crucial roles in synaptic integ...
Early coordinated network activity promotes the development of cortical structures. Although these e...
Layer 1 (L1) neurons, in particular Cajal–Retzius (CR) cells are among the earliest generated neuron...
A hallmark pattern of activity in developing nervous systems is spontaneous, synchronized network ac...
Cortical circuits exhibit highly dynamic and complex neural activity. Intriguingly, cortical activit...
SummarySpontaneous network activity constitutes a central theme during the development of neuronal c...
Spontaneous network activity constitutes a central theme during the development of neuronal circuitr...
doi:10.3791/3550 (2011). A hallmark pattern of activity in developing nervous systems is spontaneous...
Spontaneous network activity constitutes a central theme during the development of neuronal circuitr...
AbstractThe flow of activity in the cortical microcircuitry is poorly understood. We use calcium ima...
Summary The neocortex undergoes extensive developmental growth, but how its architecture adapts to e...