Spontaneous episodic activity is a general feature of developing neural networks. In the chick spinal cord, the activity comprises episodes of rhythmic discharge (duration 5-90 sec; cycle rate 0.1-2 Hz) that recur every 2-30 min. The activity does not depend on specialized connectivity or intrinsic bursting neurons and is generated by a network of functionally excitatory connections. Here, we develop an idealized, qualitative model of a homogeneous, excitatory recurrent network that could account for the multiple time-scale spontaneous activity in the embryonic chick spinal cord. We show that cycling can arise from the interplay between excitatory connectivity and fast synaptic depression. The slow episodic behavior is attributable to a slo...
The spinal motor circuits of the Xenopus embryo have been simulated in a 400- neuron network. To exp...
The generation of rhythmic electrical activity is a prominent feature of spinal cord circuits that i...
Developing neuronal networks display spontaneous bursts of action potentials that are necessary for ...
Spontaneous episodic activity is a general feature of developing neural networks. In the chick spina...
Spontaneous episodic activity is a general feature of developing neural networks. In the chick spina...
We examined the effects of spontaneous or evoked episodes of rhythmic activity on synaptic transmiss...
Numerous animal behaviors, such as locomotion in vertebrates, are produced by rhythmic contractions ...
We consider a randomly connected neural network with linear threshold elements which update in discr...
Locomotion in vertebrates is controlled by central pattern generators in the spinal cord. The roles ...
We consider a randomly connected neural network with linear threshold elements which update in discr...
The mechanisms responsible for generating rhythmic motor activity in the developing spinal cord of t...
The mechanisms responsible for generating rhythmic motor activity in the developing spinal cord of t...
This is a pre-print of an article published in Jouurnal of Mathematical Biology. The final authentic...
The output of a neuronal network depends on the organization and functional properties of its compon...
Presented in this paper is a neural network model that can be used to investigate the possible self-...
The spinal motor circuits of the Xenopus embryo have been simulated in a 400- neuron network. To exp...
The generation of rhythmic electrical activity is a prominent feature of spinal cord circuits that i...
Developing neuronal networks display spontaneous bursts of action potentials that are necessary for ...
Spontaneous episodic activity is a general feature of developing neural networks. In the chick spina...
Spontaneous episodic activity is a general feature of developing neural networks. In the chick spina...
We examined the effects of spontaneous or evoked episodes of rhythmic activity on synaptic transmiss...
Numerous animal behaviors, such as locomotion in vertebrates, are produced by rhythmic contractions ...
We consider a randomly connected neural network with linear threshold elements which update in discr...
Locomotion in vertebrates is controlled by central pattern generators in the spinal cord. The roles ...
We consider a randomly connected neural network with linear threshold elements which update in discr...
The mechanisms responsible for generating rhythmic motor activity in the developing spinal cord of t...
The mechanisms responsible for generating rhythmic motor activity in the developing spinal cord of t...
This is a pre-print of an article published in Jouurnal of Mathematical Biology. The final authentic...
The output of a neuronal network depends on the organization and functional properties of its compon...
Presented in this paper is a neural network model that can be used to investigate the possible self-...
The spinal motor circuits of the Xenopus embryo have been simulated in a 400- neuron network. To exp...
The generation of rhythmic electrical activity is a prominent feature of spinal cord circuits that i...
Developing neuronal networks display spontaneous bursts of action potentials that are necessary for ...