Brain rhythms emerge from the mean-field activity of networks of neurons. There have been many efforts to build mathematical and computational embodiments in the form of discrete cell-group activities—termed neural masses—to understand in particular the origins of evoked potentials, intrinsic patterns of activities such as theta, regulation of sleep, Parkinson’s disease related dynamics, and mimic seizure dynamics. As originally utilized, standard neural masses convert input through a sigmoidal function to a firing rate, and firing rate through a synaptic alpha function to other masses. Here we define a process to build mechanistic neural masses (mNMs) as mean-field models of microscopic membrane-type (Hodgkin Huxley type) models of differe...
International audienceIn this letter, we propose a general framework for studying neural mass models...
International audienceIn this letter, we propose a general framework for studying neural mass models...
International audienceIn this letter, we propose a general framework for studying neural mass models...
Neural mass models (NMM) describe neural activity on a macroscopic scale, which can be compared to t...
Abstract Neural mass models are successful in modeling brain rhythms as observed in macroscopic meas...
Abstract Neural mass models are successful in modeling brain rhythms as observed in macroscopic meas...
Biophysical modelling of brain activity has a long and illustrious history and has recently profited...
Neural mass and neural field models have been actively used since the 1970s to model the coarse grai...
© Copyright © 2021 Deschle, Ignacio Gossn, Tewarie, Schelter and Daffertshofer.Modeling the dynamics...
© Copyright © 2021 Deschle, Ignacio Gossn, Tewarie, Schelter and Daffertshofer.Modeling the dynamics...
Oscillations between various populations of neurons are common and well documented. However, there ...
Several firing patterns experimentally observed in neural populations have been successfully correla...
Low-dimensional neural mass models are often invoked to model the coarse-grained activity of large p...
Low-dimensional neural mass models are often invoked to model the coarse-grained activity of large p...
Several firing patterns experimentally observed in neural populations have been successfully correla...
International audienceIn this letter, we propose a general framework for studying neural mass models...
International audienceIn this letter, we propose a general framework for studying neural mass models...
International audienceIn this letter, we propose a general framework for studying neural mass models...
Neural mass models (NMM) describe neural activity on a macroscopic scale, which can be compared to t...
Abstract Neural mass models are successful in modeling brain rhythms as observed in macroscopic meas...
Abstract Neural mass models are successful in modeling brain rhythms as observed in macroscopic meas...
Biophysical modelling of brain activity has a long and illustrious history and has recently profited...
Neural mass and neural field models have been actively used since the 1970s to model the coarse grai...
© Copyright © 2021 Deschle, Ignacio Gossn, Tewarie, Schelter and Daffertshofer.Modeling the dynamics...
© Copyright © 2021 Deschle, Ignacio Gossn, Tewarie, Schelter and Daffertshofer.Modeling the dynamics...
Oscillations between various populations of neurons are common and well documented. However, there ...
Several firing patterns experimentally observed in neural populations have been successfully correla...
Low-dimensional neural mass models are often invoked to model the coarse-grained activity of large p...
Low-dimensional neural mass models are often invoked to model the coarse-grained activity of large p...
Several firing patterns experimentally observed in neural populations have been successfully correla...
International audienceIn this letter, we propose a general framework for studying neural mass models...
International audienceIn this letter, we propose a general framework for studying neural mass models...
International audienceIn this letter, we propose a general framework for studying neural mass models...