International audienceWork in the last two decades has shown that neural mass models (NMM) can realistically reproduce and explain epileptic seizure transitions as recorded by electrophysiological methods (EEG, SEEG). In previous work, advances were achieved by increasing excitation and heuristically varying network inhibitory coupling parameters in the models. Based on these early studies, we provide a laminar NMM capable of realistically reproducing the electrical activity recorded by SEEG in the epileptogenic zone during interictal to ictal states. With the exception of the external noise input into the pyramidal cell population, the model dynamics are autonomous. By setting the system at a point close to bifurcation, seizure-like transi...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
International audienceMathematical models at multiple temporal and spatial scales can unveil the fun...
International audienceMathematical models at multiple temporal and spatial scales can unveil the fun...
International audienceWork in the last two decades has shown that neural mass models (NMM) can reali...
International audienceWork in the last two decades has shown that neural mass models (NMM) can reali...
International audienceWork in the last two decades has shown that neural mass models (NMM) can reali...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
The majority of seizures recorded in humans and experimental animal models can be described by a gen...
In this work, we propose an approach that allows to explore the potential pathophysiological mechani...
The majority of seizures recorded in humans and experimental animal models can be described by a gen...
International audienceEpileptic seizure dynamics span multiple scales in space and time. Understandi...
Epileptic seizures occur intermittently as a result of complex dynamical interactions among many reg...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
We present the results of a model inversion algorithm for electrocorticography (ECoG) data recorded ...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
International audienceMathematical models at multiple temporal and spatial scales can unveil the fun...
International audienceMathematical models at multiple temporal and spatial scales can unveil the fun...
International audienceWork in the last two decades has shown that neural mass models (NMM) can reali...
International audienceWork in the last two decades has shown that neural mass models (NMM) can reali...
International audienceWork in the last two decades has shown that neural mass models (NMM) can reali...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
The majority of seizures recorded in humans and experimental animal models can be described by a gen...
In this work, we propose an approach that allows to explore the potential pathophysiological mechani...
The majority of seizures recorded in humans and experimental animal models can be described by a gen...
International audienceEpileptic seizure dynamics span multiple scales in space and time. Understandi...
Epileptic seizures occur intermittently as a result of complex dynamical interactions among many reg...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
We present the results of a model inversion algorithm for electrocorticography (ECoG) data recorded ...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
Epilepsy is a dynamic and complex neurological disease affecting about 1% of the worldwide populatio...
International audienceMathematical models at multiple temporal and spatial scales can unveil the fun...
International audienceMathematical models at multiple temporal and spatial scales can unveil the fun...