Contemporary simulation technology for neuronal networks enables the simulation of brain-scale networks using neuron models with a single or a few compartments. However, distributed simulations at full cell density are still lacking the electrical coupling between cells via so called gap junctions. This is due to the absence of efficient algorithms to simulate gap junctions on large parallel computers. The difficulty is that gap junctions require an instantaneous interaction between the coupled neurons, whereas the efficiency of simulation codes for spiking neurons relies on delayed communication. In a recent paper [15] we describe a technology to overcome this obstacle. Here, we give an overview of the challenges to include gap junctions i...
This dissertation studies the roles of gap junctions in the dynamics of neuronal networks in three d...
The field of computational neuroscience has received a substantial boost during the last two decades...
NEST is an established, open-source simulator for spiking neuronal networks, which can capture a hig...
With morphologically detailed neurons at the forefront, the Arbor simulation library provides a fram...
This tutorial starts with an introduction to large-scale neuronal networks, giving examples of exist...
framework for spiking and gap-junction interactions in distributed neuronal network simulations. Fro...
We will provide a short overview over the design principles and capabilities of NEST, The Neural Sim...
Today’s extremely scalable simulation technology for spiking neuronal networks enables the represent...
<p><b>A</b> Schematic presentation of network connectivity, for Z = 4 (f...
The NEURON simulation environment has been extended to support parallel network simulations. Each pr...
The brain consists of around 100 billion neurons, or brain cells, connected by an incredibly complex...
This code produces the figures F3B, F3C, F3D, F3E, F3H, and F3J in the manuscript "Gap junctions des...
State-of-the-art software tools for neuronal network simulations scale to the largest computing syst...
The recent report by Fukuda et al [1] provides convincing evidence for dense gap-junction connectivi...
Over the last couple of years, supercomputers such as the Blue Gene/Q system JUQUEEN in Jülich and t...
This dissertation studies the roles of gap junctions in the dynamics of neuronal networks in three d...
The field of computational neuroscience has received a substantial boost during the last two decades...
NEST is an established, open-source simulator for spiking neuronal networks, which can capture a hig...
With morphologically detailed neurons at the forefront, the Arbor simulation library provides a fram...
This tutorial starts with an introduction to large-scale neuronal networks, giving examples of exist...
framework for spiking and gap-junction interactions in distributed neuronal network simulations. Fro...
We will provide a short overview over the design principles and capabilities of NEST, The Neural Sim...
Today’s extremely scalable simulation technology for spiking neuronal networks enables the represent...
<p><b>A</b> Schematic presentation of network connectivity, for Z = 4 (f...
The NEURON simulation environment has been extended to support parallel network simulations. Each pr...
The brain consists of around 100 billion neurons, or brain cells, connected by an incredibly complex...
This code produces the figures F3B, F3C, F3D, F3E, F3H, and F3J in the manuscript "Gap junctions des...
State-of-the-art software tools for neuronal network simulations scale to the largest computing syst...
The recent report by Fukuda et al [1] provides convincing evidence for dense gap-junction connectivi...
Over the last couple of years, supercomputers such as the Blue Gene/Q system JUQUEEN in Jülich and t...
This dissertation studies the roles of gap junctions in the dynamics of neuronal networks in three d...
The field of computational neuroscience has received a substantial boost during the last two decades...
NEST is an established, open-source simulator for spiking neuronal networks, which can capture a hig...