The directed transfer function (dtf) has been proposed as a measure of information flow between the components of multivariate time series. In this paper, we discuss the interpretation of the dtf and compare it with other measures for directed relationships. In particular, we show that the dtf does not indicate multivariate or bivariate granger causality, but that it is closely related to the concept of impulse response function and can be viewed as a spectral measure for the total causal influence from one component to another. Furthermore, we investigate the statistical properties of the dtf and establish a simple significance level for testing for the null hypothesis of no information flow
Spectral measures of causality are used to explore the role of different rhythms in the causal conne...
The paper investigates the link between Granger causality graphs recently formalized by Eichler and ...
Measures of the direction and strength of the interdependence among time series from multivariate sy...
The directed transfer function (dtf) has been proposed as a measure of information flow between the ...
submitted, minor changes, different presentation of simulation resultsThis paper deals with the stud...
On the evaluation of information flow in multivariate systems by the directed transfer functio
We consider the question of evaluating causal relations among neurobiological signals. In particular...
International audienceIn this paper we present an approach to analyze the direction of information f...
In order to provide adequate multivariate measures of information flow between neural structures, mo...
This article belongs to the Special Issue 'Transfer Entropy'International audienceThis report review...
Accurately determining dependency structure is critical to discovering a system's causal or...
This report reviews the conceptual and theoretical links between Granger causality and directed info...
We propose a new measure (phase-slope index) to estimate the direction of information flux in multiv...
The detection of causal effects among simultaneous observations provides knowledge about the underly...
Detecting and characterizing causal interdependencies and couplings between different activated brai...
Spectral measures of causality are used to explore the role of different rhythms in the causal conne...
The paper investigates the link between Granger causality graphs recently formalized by Eichler and ...
Measures of the direction and strength of the interdependence among time series from multivariate sy...
The directed transfer function (dtf) has been proposed as a measure of information flow between the ...
submitted, minor changes, different presentation of simulation resultsThis paper deals with the stud...
On the evaluation of information flow in multivariate systems by the directed transfer functio
We consider the question of evaluating causal relations among neurobiological signals. In particular...
International audienceIn this paper we present an approach to analyze the direction of information f...
In order to provide adequate multivariate measures of information flow between neural structures, mo...
This article belongs to the Special Issue 'Transfer Entropy'International audienceThis report review...
Accurately determining dependency structure is critical to discovering a system's causal or...
This report reviews the conceptual and theoretical links between Granger causality and directed info...
We propose a new measure (phase-slope index) to estimate the direction of information flux in multiv...
The detection of causal effects among simultaneous observations provides knowledge about the underly...
Detecting and characterizing causal interdependencies and couplings between different activated brai...
Spectral measures of causality are used to explore the role of different rhythms in the causal conne...
The paper investigates the link between Granger causality graphs recently formalized by Eichler and ...
Measures of the direction and strength of the interdependence among time series from multivariate sy...