Modulation of epileptic activity by deep brain stimulation: a model-based study of frequency-dependent effects
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Fabrice Wendling | Pascal Benquet | Arnaud Biraben | Anca Pasnicu | Faten Mina | A. Biraben | F. Wendling | A. Pasnicu | P. Benquet | F. Mina
[1] J. J. Wright,et al. State-changes in the brain viewed as linear steady-states and non-linear transitions between steady-states , 2004, Biological Cybernetics.
[2] J. Parra,et al. Active paradigms of seizure anticipation: computer model evidence for necessity of stimulation. , 2008, Physical review. E, Statistical, nonlinear, and soft matter physics.
[3] R. Davis,et al. Update of chronic cerebellar stimulation for spasticity and epilepsy. , 1982, Applied neurophysiology.
[4] F. Rattay,et al. Analysis of the electrical excitation of CNS neurons , 1998, IEEE Transactions on Biomedical Engineering.
[5] M Velasco,et al. Electrical Stimulation of the Centromedian Thalamic Nucleus in Control of Seizures: Long‐Term Studies , 1995, Epilepsia.
[6] S Geier,et al. [New approach to the neurosurgery of epilepsy. Stereotaxic methodology and therapeutic results. 1. Introduction and history]. , 1974, Neuro-Chirurgie.
[7] R. Dow,et al. Effects of cerebellar stimulation on cobalt-induced epilepsy in the cat. , 1967, Electroencephalography and clinical neurophysiology.
[8] M. Velasco,et al. Neuromodulation of the Centromedian Thalamic Nuclei in the Treatment of Generalized Seizures and the Improvement of the Quality of Life in Patients with Lennox–Gastaut Syndrome , 2006, Epilepsia.
[9] Steve S. Chung,et al. Electrical stimulation of the anterior nucleus of thalamus for treatment of refractory epilepsy , 2010, Epilepsia.
[10] J. Hablitz. Intramuscular penicillin epilepsy in the cat: Effects of chronic cerebellar stimulation , 1976, Experimental Neurology.
[11] Maria Thom,et al. Focal cortical dysplasia type II: biological features and clinical perspectives , 2009, The Lancet Neurology.
[12] H. Dringenberg,et al. Continuous white noise exposure during and after auditory critical period differentially alters bidirectional thalamocortical plasticity in rat auditory cortex in vivo , 2007, The European journal of neuroscience.
[13] S Gilman,et al. The effect of chronic cerebellar stimulation upon epilepsy in man. , 1973, Transactions of the American Neurological Association.
[14] Stéphane Mallat,et al. Matching pursuits with time-frequency dictionaries , 1993, IEEE Trans. Signal Process..
[15] Kristl Vonck,et al. Electrical stimulation for the treatment of epilepsy , 2009, Neurotherapeutics.
[16] Michael E. Hasselmo,et al. Short term memory function in a model of the olfactory system , 1997 .
[17] P. Robinson,et al. Dynamics of large-scale brain activity in normal arousal states and epileptic seizures. , 2002, Physical review. E, Statistical, nonlinear, and soft matter physics.
[18] J. Dostrovsky,et al. Frequency-dependent effects of electrical stimulation in the globus pallidus of dystonia patients. , 2012, Journal of neurophysiology.
[19] W. Lytton. Computer modelling of epilepsy , 2008, Nature Reviews Neuroscience.
[20] James J. Wright,et al. Propagation and stability of waves of electrical activity in the cerebral cortex , 1997 .
[21] M Velasco,et al. Centromedian–Thalamic and Hippocampal Electrical Stimulation for the Control of Intractable Epileptic Seizures , 2001, Journal of clinical neurophysiology : official publication of the American Electroencephalographic Society.
[22] Su-Youne Chang,et al. High frequency stimulation abolishes thalamic network oscillations: an electrophysiological and computational analysis , 2011, Journal of neural engineering.
[23] Matteo Carandini,et al. Somatosensory Integration Controlled by Dynamic Thalamocortical Feed-Forward Inhibition , 2005, Neuron.
[24] J. Bellanger,et al. Epileptic fast activity can be explained by a model of impaired GABAergic dendritic inhibition , 2002, The European journal of neuroscience.
[25] A. Benabid,et al. Chapter 42 Deep brain stimulation in Parkinson's disease: technique and prospective, facts and comments , 2003 .
[26] A. Biraben,et al. Modulation of paroxysmal activity in focal cortical dysplasia by centromedian thalamic nucleus stimulation , 2013, Epilepsy Research.
[27] D. McCormick,et al. Endogenous Electric Fields May Guide Neocortical Network Activity , 2010, Neuron.
[28] Fabrice Wendling,et al. Relevance of nonlinear lumped-parameter models in the analysis of depth-EEG epileptic signals , 2000, Biological Cybernetics.
[29] M Velasco,et al. Electrocortical and behavioral responses produced by acute electrical stimulation of the human centromedian thalamic nucleus. , 1997, Electroencephalography and clinical neurophysiology.
[30] P. Nunez. The brain wave equation: a model for the EEG , 1974 .
[31] L. Astolfi,et al. A neural mass model for the simulation of cortical activity estimated from high resolution EEG during cognitive or motor tasks , 2006, Journal of Neuroscience Methods.
[32] Steven W. Johnson,et al. Synaptic plasticity in rat subthalamic nucleus induced by high‐frequency stimulation , 2003, Synapse.
[33] J. Delgado-García,et al. Effects of transcranial Direct Current Stimulation (tDCS) on cortical activity: A computational modeling study , 2013, Brain Stimulation.
[34] J. Deniau,et al. Neuroleptic-Induced Catalepsy: Electrophysiological Mechanisms of Functional Recovery Induced by High-Frequency Stimulation of the Subthalamic Nucleus , 2005, The Journal of Neuroscience.
[35] F. H. Lopes da Silva,et al. Models of neuronal populations: the basic mechanisms of rhythmicity. , 1976, Progress in brain research.
[36] P. Robinson,et al. Modeling absence seizure dynamics: implications for basic mechanisms and measurement of thalamocortical and corticothalamic latencies. , 2008, Journal of theoretical biology.
[37] G Pfurtscheller,et al. Computational model of thalamo-cortical networks: dynamical control of alpha rhythms in relation to focal attention. , 2001, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[38] M Velasco,et al. Acute and chronic electrical stimulation of the centromedian thalamic nucleus: modulation of reticulo-cortical systems and predictor factors for generalized seizure control. , 2000, Archives of medical research.
[39] A. Palmini,et al. Electrophysiology of the focal cortical dysplasias , 2010, Epilepsia.
[40] M. Avoli,et al. Epileptiform synchronization in the human dysplastic cortex. , 2003, Epileptic disorders : international epilepsy journal with videotape.
[41] Philip J. Hahn,et al. Network perspectives on the mechanisms of deep brain stimulation , 2010, Neurobiology of Disease.
[42] John R. Terry,et al. A unifying explanation of primary generalized seizures through nonlinear brain modeling and bifurcation analysis. , 2006, Cerebral cortex.
[43] J. Cowan,et al. Excitatory and inhibitory interactions in localized populations of model neurons. , 1972, Biophysical journal.
[44] John R. Terry,et al. Transition to absence seizures and the role of GABAA receptors , 2011, Epilepsy Research.
[45] M Velasco,et al. Deep brain stimulation for treatment of the epilepsies: the centromedian thalamic target. , 2007, Acta neurochirurgica. Supplement.
[46] Fernando H. Lopes da Silva,et al. Event-related neural activities: what about phase? , 2006 .
[47] D. Liley,et al. Modeling the effects of anesthesia on the electroencephalogram. , 2005, Physical review. E, Statistical, nonlinear, and soft matter physics.
[48] John R. Terry,et al. Onset of polyspike complexes in a mean-field model of human electroencephalography and its application to absence epilepsy , 2009, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[49] D. Liley,et al. Understanding the Transition to Seizure by Modeling the Epileptiform Activity of General Anesthetic Agents , 2005, Journal of clinical neurophysiology : official publication of the American Electroencephalographic Society.
[50] Ben H. Jansen,et al. A neurophysiologically-based mathematical model of flash visual evoked potentials , 2004, Biological Cybernetics.
[51] Karl A. Sillay,et al. Deep Brain Stimulation in Parkinson’s Disease , 2009 .
[52] Jan Geelen,et al. Modelling motor cortex stimulation for chronic pain control: Electrical potential field, activating functions and responses of simple nerve fibre models , 2005, Medical and Biological Engineering and Computing.
[53] Fabrice Wendling,et al. Interictal spikes, fast ripples and seizures in partial epilepsies – combining multi‐level computational models with experimental data , 2012, The European journal of neuroscience.
[54] C. McIntyre,et al. Uncovering the mechanism(s) of action of deep brain stimulation: activation, inhibition, or both , 2004, Clinical Neurophysiology.
[55] H. Bergman,et al. Pathological synchronization in Parkinson's disease: networks, models and treatments , 2007, Trends in Neurosciences.
[56] F. L. D. Silva,et al. Dynamics of the human alpha rhythm: evidence for non-linearity? , 1999, Clinical Neurophysiology.
[57] C. McIntyre,et al. Cellular effects of deep brain stimulation: model-based analysis of activation and inhibition. , 2004, Journal of neurophysiology.
[58] P. Schwartzkroin,et al. Are developmental dysplastic lesions epileptogenic? , 2012, Epilepsia.
[59] A. Lang,et al. Long-term subthalamic nucleus stimulation improves sensorimotor integration and proprioception , 2013, Journal of Neurology, Neurosurgery & Psychiatry.
[60] M. Scanziani,et al. How Inhibition Shapes Cortical Activity , 2011, Neuron.
[61] T. Tsumoto,et al. Long-Term Depression Is Not Induced by Low-Frequency Stimulation in Rat Visual Cortex In Vivo: A Possible Preventing Role of Endogenous Brain-Derived Neurotrophic Factor , 2003, The Journal of Neuroscience.
[62] Sacha Krstulovic,et al. Mptk: Matching Pursuit Made Tractable , 2006, 2006 IEEE International Conference on Acoustics Speech and Signal Processing Proceedings.
[63] M. Duchowny,et al. A safe and effective paradigm to functionally map the cortex in childhood. , 1992, Journal of clinical neurophysiology : official publication of the American Electroencephalographic Society.
[64] R. Racine,et al. Modification of seizure activity by electrical stimulation. II. Motor seizure. , 1972, Electroencephalography and clinical neurophysiology.
[65] J. Dostrovsky,et al. Stimulation-induced inhibition of neuronal firing in human subthalamic nucleus , 2004, Experimental Brain Research.
[66] Karl J. Friston,et al. A neural mass model for MEG/EEG: coupling and neuronal dynamics , 2003, NeuroImage.
[67] F. L. D. Silva,et al. Dynamics of non-convulsive epileptic phenomena modeled by a bistable neuronal network , 2004, Neuroscience.
[68] J. Dostrovsky,et al. Microstimulation-induced inhibition of neuronal firing in human globus pallidus. , 2000, Journal of neurophysiology.
[69] R. Weller,et al. Biopsy and post-mortem findings in a patient receiving cerebellar stimulation for epilepsy. , 1983, Journal of neurology, neurosurgery, and psychiatry.
[70] R. Crabtree. Introduction and History , 2011 .
[71] M. Calcagnotto,et al. Dysfunction of Synaptic Inhibition in Epilepsy Associated with Focal Cortical Dysplasia , 2005, The Journal of Neuroscience.
[72] Ljubomir Manola,et al. Anodal vs cathodal stimulation of motor cortex: A modeling study , 2007, Clinical Neurophysiology.
[73] S. Nelson,et al. Short-Term Depression at Thalamocortical Synapses Contributes to Rapid Adaptation of Cortical Sensory Responses In Vivo , 2002, Neuron.
[74] Donald L Rowe,et al. Estimation of neurophysiological parameters from the waking EEG using a biophysical model of brain dynamics. , 2004, Journal of theoretical biology.
[75] M. Scanziani,et al. Enforcement of Temporal Fidelity in Pyramidal Cells by Somatic Feed-Forward Inhibition , 2001, Science.
[76] Alan D Dorval,et al. Deep brain stimulation reduces neuronal entropy in the MPTP-primate model of Parkinson's disease. , 2008, Journal of neurophysiology.
[77] C. Hammond,et al. High-frequency stimulation produces a transient blockade of voltage-gated currents in subthalamic neurons. , 2001, Journal of neurophysiology.
[78] Mario di Bernardo,et al. Characterisation of cortical activity in response to deep brain stimulation of ventral–lateral nucleus: Modelling and experiment , 2009, Journal of Neuroscience Methods.
[79] Eunyoung Kim,et al. Decreased afferent excitability contributes to synaptic depression during high-frequency stimulation in hippocampal area CA1. , 2012, Journal of neurophysiology.
[80] G. V. Goddard,et al. Development of Epileptic Seizures through Brain Stimulation at Low Intensity , 1967, Nature.
[81] Fernando H Lopes da Silva. Event-related neural activities: what about phase? , 2006, Progress in brain research.
[82] Nicholas J. Priebe,et al. Short-Term Depression in Thalamocortical Synapses of Cat Primary Visual Cortex , 2005, The Journal of Neuroscience.
[83] F. H. Lopes da Silva,et al. Model of brain rhythmic activity , 1974, Kybernetik.
[84] Walter J. Freeman,et al. TUTORIAL ON NEUROBIOLOGY: FROM SINGLE NEURONS TO BRAIN CHAOS , 1992 .
[85] F. Wendling. Computational models of epileptic activity: a bridge between observation and pathophysiological interpretation , 2008, Expert review of neurotherapeutics.
[86] Fabrice Wendling,et al. Computational modeling of high-frequency oscillations at the onset of neocortical partial seizures: From ‘altered structure’ to ‘dysfunction’ , 2010, NeuroImage.
[87] Jan Chrastina,et al. Interictal high-frequency oscillations indicate seizure onset zone in patients with focal cortical dysplasia , 2010, Epilepsy Research.
[88] J. Jefferys,et al. Effects of uniform extracellular DC electric fields on excitability in rat hippocampal slices in vitro , 2004, The Journal of physiology.