Relationships between spiking-neuron and rate-based approaches to the dynamics of neural assemblies are explored by analyzing a model system that can be treated by both methods, with the rate-based method further averaged over multiple neurons to give a neural-field approach. The system consists of a chain of neurons, each with simple spiking dynamics that has a known rate-based equivalent. The neurons are linked by propagating activity that is described in terms of a spatial interaction strength with temporal delays that reflect distances between neurons; feedback via a separate delay loop is also included because such loops also exist in real brains. These interactions are described using a spatiotemporal coupling function that can carry ...
: A neural network is presented that stores spatio-temporal patterns (synfirechains) in associative ...
We investigated the dynamics of activity in feedback neural network models at low firing rates. The ...
Pairs of active neurons frequently fire action potentials or "spikes" nearly synchronously (i.e., wi...
Relationships between spiking-neuron and rate-based approaches to the dynamics of neural assemblies ...
Contemporary modeling approaches to the dynamics of neural networks include two important classes of...
Extensive simulations of large recurrent networks of integrate-and-fire excitatory and inhibitory ne...
A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain...
The time-interval sequences and the spatiotemporal patterns of the firings of a coupled neuronal net...
A prominent feature of the dynamics of large neuronal networks are the synchrony-driven collective o...
A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain...
Synchronized neural activity, in which the firing of neurons is coordinated in time, is an observed ...
Local circuits in the cortex and hippocampus are endowed with resonant, oscillatory firing propertie...
Recurrently coupled networks of inhibitory neurons robustly generate oscillations in the gamma band....
Author summary Population models describing the average activity of large neuronal ensembles are a p...
In the field of computational neuroscience, spiking neural network models are generally preferred ov...
: A neural network is presented that stores spatio-temporal patterns (synfirechains) in associative ...
We investigated the dynamics of activity in feedback neural network models at low firing rates. The ...
Pairs of active neurons frequently fire action potentials or "spikes" nearly synchronously (i.e., wi...
Relationships between spiking-neuron and rate-based approaches to the dynamics of neural assemblies ...
Contemporary modeling approaches to the dynamics of neural networks include two important classes of...
Extensive simulations of large recurrent networks of integrate-and-fire excitatory and inhibitory ne...
A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain...
The time-interval sequences and the spatiotemporal patterns of the firings of a coupled neuronal net...
A prominent feature of the dynamics of large neuronal networks are the synchrony-driven collective o...
A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain...
Synchronized neural activity, in which the firing of neurons is coordinated in time, is an observed ...
Local circuits in the cortex and hippocampus are endowed with resonant, oscillatory firing propertie...
Recurrently coupled networks of inhibitory neurons robustly generate oscillations in the gamma band....
Author summary Population models describing the average activity of large neuronal ensembles are a p...
In the field of computational neuroscience, spiking neural network models are generally preferred ov...
: A neural network is presented that stores spatio-temporal patterns (synfirechains) in associative ...
We investigated the dynamics of activity in feedback neural network models at low firing rates. The ...
Pairs of active neurons frequently fire action potentials or "spikes" nearly synchronously (i.e., wi...