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Quantification of spontaneous and evoked HFO's in SEEG recording and prospective for pre-surgical diagnostics. Case study., , , , , , , и . EMBC, стр. 1024-1027. IEEE, (2012)Optical Flow Group-Parameter Reconstruction from Multi-Channel Image Sequences., , и . APPIS, том 310 из Frontiers in Artificial Intelligence and Applications, стр. 290-301. IOS Press, (2018)Integral single-event scene reconstruction from general over-complete sets of measurements with application to explosions localization and charge estimation., , и . Integr. Comput. Aided Eng., 20 (2): 95-110 (2013)Prospecting epilepsy surgery outcome using virtual resection paradigm. Computational-model validation., , , и . CIBCB, стр. 1-8. IEEE, (2020)Emergent complex patterns in autonomous distributed systems: mechanisms for attention recovery and relation to models of clinical epilepsy., , , , и . SMC (2), стр. 2066-2072. IEEE, (2004)Invertible Orientation Bundles on 2D Scalar Images., , и . Scale-Space, том 1252 из Lecture Notes in Computer Science, стр. 77-88. Springer, (1997)On Topological Deep-Structure Segmentation., , и . ICIP (2), стр. 863-866. IEEE Computer Society, (1997)Scale-Iterative Optical Flow Reconstruction from Multi-Channel Image Sequences., , и . APPIS, том 310 из Frontiers in Artificial Intelligence and Applications, стр. 302-314. IOS Press, (2018)Cortical excitability as a potential Clinical Marker of epilepsy: a Review of the Clinical Application of Transcranial magnetic Stimulation., , , , и . Int. J. Neural Syst., (2014)Frame-Relative Critical Point Sets in Image Analysis., , , и . CAIP, том 1689 из Lecture Notes in Computer Science, стр. 578-587. Springer, (1999)