In complex networks such as gene networks, traffic systems or brain circuits it is important to understand how long it takes for the different parts of the network to effectively influence one another. In the brain, for example, axonal delays between brain areas can amount to several tens of milliseconds, adding an intrinsic component to any timing-based processing of information. Inferring neural interaction delays is thus needed to interpret the information transfer revealed by any analysis of directed interactions across brain structures. However, a robust estimation of interaction delays from neural activity faces several challenges if modeling assumptions on interaction mechanisms are wrong or cannot be made. Here, we propose a robust ...
Cross-frequency interactions, a form of oscillatory neural activity, are thought to play an essentia...
The human brain constitutes one of the most advanced networks produced by nature, consisting of bill...
In real-world systems, interactions between elements do not happen instantaneously, due to the time ...
In complex networks such as gene networks, traffic systems or brain circuits it is important to unde...
In complex networks such as gene networks, traffic systems or brain circuits it is important to unde...
Transfer entropy (TE) is an information-theoretic measure which has received recent attention in neu...
Objective: While understanding the interaction patterns among simultaneous recordings of spike train...
In neuroscience, data are typically generated from neural network activity. The resulting time serie...
In neuroscience, data are typically generated from neural network activity. The resulting time serie...
<div><p>Estimating the causal interaction between neurons is very important for better understanding...
Estimating the causal interaction between neurons is very important for better understanding the fun...
To investigate directed interactions in neural networks we often use Norbert Wiener's famous definit...
It is a common notion in neuroscience research that the brain and neural systems in general "perform...
The phenomenon of synchronization between two or more areas of the brain coupled asymmetrically is a...
We assume that even the simplest model of the brain is nonlinear and ‘causal’. Proceeding with the ...
Cross-frequency interactions, a form of oscillatory neural activity, are thought to play an essentia...
The human brain constitutes one of the most advanced networks produced by nature, consisting of bill...
In real-world systems, interactions between elements do not happen instantaneously, due to the time ...
In complex networks such as gene networks, traffic systems or brain circuits it is important to unde...
In complex networks such as gene networks, traffic systems or brain circuits it is important to unde...
Transfer entropy (TE) is an information-theoretic measure which has received recent attention in neu...
Objective: While understanding the interaction patterns among simultaneous recordings of spike train...
In neuroscience, data are typically generated from neural network activity. The resulting time serie...
In neuroscience, data are typically generated from neural network activity. The resulting time serie...
<div><p>Estimating the causal interaction between neurons is very important for better understanding...
Estimating the causal interaction between neurons is very important for better understanding the fun...
To investigate directed interactions in neural networks we often use Norbert Wiener's famous definit...
It is a common notion in neuroscience research that the brain and neural systems in general "perform...
The phenomenon of synchronization between two or more areas of the brain coupled asymmetrically is a...
We assume that even the simplest model of the brain is nonlinear and ‘causal’. Proceeding with the ...
Cross-frequency interactions, a form of oscillatory neural activity, are thought to play an essentia...
The human brain constitutes one of the most advanced networks produced by nature, consisting of bill...
In real-world systems, interactions between elements do not happen instantaneously, due to the time ...