The prototyping and the development of computational codes for biological models, in terms of reliability, efficient and portable building blocks allow to simulate real cerebral behaviours and to validate theories and experiments. A critical issue is the tuning of a model by means of several numerical simulations with the aim to reproduce real scenarios. This requires a huge amount of computational resources to assess the impact of parameters that influence the neuronal response. In this paper, we describe how parallel tools are adopted to simulate the socalled depolarization block of a CA1 pyramidal cell of hippocampus. Here, the high performance computing techniques are adopted in order to achieve a more efficient model simulation. Finall...
Supercomputing is increasingly available in neuroscience and boosts the ability to create models wit...
This work focuses on methods, algorithms and software for computational neuroscience, a research fie...
I developed a full-scale, biologically constrained model of hippocampal CA1 subfield that is capable...
The prototyping and the development of computational codes for biological models, in terms of reliab...
AbstractThe prototyping and the development of computational codes for biological models, in terms o...
In this paper we show a way to use high performance computing techniques in order to achieve a more ...
Neuroscience is witnessing increasing knowledge about the anatomy and electrophysiological propertie...
[Abstract] Background: The human brain is the most complex system in the known universe, it is there...
Simulations of electrical activity of networks of morphologically detailed neuron models allow for a...
Computational Neuroscience helped develop mathematical and computational tools for the creation, the...
The simulation of brain areas (e.g. the visual cortex), comprising huge networks of integrate & ...
Computational neuroscience aims to investigate and explain the behaviour and functions of neural str...
Les neurosciences computationnelles ont permis de développer des outils mathématiques et informatiqu...
Biological neuronal networks models can be investigated with the NEST simulator (Gewaltig and Diesma...
Parallelism and distribution have been considered the key features of neural processing. The term pa...
Supercomputing is increasingly available in neuroscience and boosts the ability to create models wit...
This work focuses on methods, algorithms and software for computational neuroscience, a research fie...
I developed a full-scale, biologically constrained model of hippocampal CA1 subfield that is capable...
The prototyping and the development of computational codes for biological models, in terms of reliab...
AbstractThe prototyping and the development of computational codes for biological models, in terms o...
In this paper we show a way to use high performance computing techniques in order to achieve a more ...
Neuroscience is witnessing increasing knowledge about the anatomy and electrophysiological propertie...
[Abstract] Background: The human brain is the most complex system in the known universe, it is there...
Simulations of electrical activity of networks of morphologically detailed neuron models allow for a...
Computational Neuroscience helped develop mathematical and computational tools for the creation, the...
The simulation of brain areas (e.g. the visual cortex), comprising huge networks of integrate & ...
Computational neuroscience aims to investigate and explain the behaviour and functions of neural str...
Les neurosciences computationnelles ont permis de développer des outils mathématiques et informatiqu...
Biological neuronal networks models can be investigated with the NEST simulator (Gewaltig and Diesma...
Parallelism and distribution have been considered the key features of neural processing. The term pa...
Supercomputing is increasingly available in neuroscience and boosts the ability to create models wit...
This work focuses on methods, algorithms and software for computational neuroscience, a research fie...
I developed a full-scale, biologically constrained model of hippocampal CA1 subfield that is capable...