Neurobiological systems rely on hierarchical and modular architectures to carry out intricate computations using minimal resources. A prerequisite for such systems to operate adequately is the capability to reliably and efficiently transfer information across multiple modules. Here, we study the features enabling a robust transfer of stimulus representations in modular networks of spiking neurons, tuned to operate in a balanced regime. To capitalize on the complex, transient dynamics that such networks exhibit during active processing, we apply reservoir computing principles and probe the systems' computational efficacy with specific tasks. Focusing on the comparison of random feed-forward connectivity and biologically inspired topographic ...
∗ equal contribution. While spike timing has been shown to carry detailed stimulus information at th...
Two observations about the cortex have puzzled neuroscientists for a long time. First, neural respon...
It is still a mystery how information is processed in the brain, dynamically and reliably at the sam...
Neurobiological systems rely on hierarchical and modular architectures to carry out intricate comput...
Hierarchical modularity is a parsimonious design principle in many complex systems and underlies var...
The neural network is a powerful computing framework that has been exploited by biological evolution...
Abstract: Neural networks, despite their highly interconnected nature, exhibit distinctly localized ...
Information from the sensory periphery is conveyed to the cortex via structured projection pathways ...
The way brain networks maintain high transmission efficiency is believed to be fundamental in unders...
To navigate in a dynamic and noisy environment, the brain must create reliable and meaningful repres...
Transient oscillations in network activity upon sensory stimulation have been reported in different ...
Neural oscillations can enhance feature recognition (Azouz and Gray Proceedings of the National Acad...
Recent results have shown that functional connectivity among cortical neurons is highly varied, with...
Our brains process information using a layered hierarchical network architecture, with abundant conn...
Despite significant progress in our understanding of the brain at both microscopic and macroscopic s...
∗ equal contribution. While spike timing has been shown to carry detailed stimulus information at th...
Two observations about the cortex have puzzled neuroscientists for a long time. First, neural respon...
It is still a mystery how information is processed in the brain, dynamically and reliably at the sam...
Neurobiological systems rely on hierarchical and modular architectures to carry out intricate comput...
Hierarchical modularity is a parsimonious design principle in many complex systems and underlies var...
The neural network is a powerful computing framework that has been exploited by biological evolution...
Abstract: Neural networks, despite their highly interconnected nature, exhibit distinctly localized ...
Information from the sensory periphery is conveyed to the cortex via structured projection pathways ...
The way brain networks maintain high transmission efficiency is believed to be fundamental in unders...
To navigate in a dynamic and noisy environment, the brain must create reliable and meaningful repres...
Transient oscillations in network activity upon sensory stimulation have been reported in different ...
Neural oscillations can enhance feature recognition (Azouz and Gray Proceedings of the National Acad...
Recent results have shown that functional connectivity among cortical neurons is highly varied, with...
Our brains process information using a layered hierarchical network architecture, with abundant conn...
Despite significant progress in our understanding of the brain at both microscopic and macroscopic s...
∗ equal contribution. While spike timing has been shown to carry detailed stimulus information at th...
Two observations about the cortex have puzzled neuroscientists for a long time. First, neural respon...
It is still a mystery how information is processed in the brain, dynamically and reliably at the sam...