Unsupervised machine-learning classification of electrophysiologically active electrodes during human cognitive task performance
暂无分享,去创建一个
Ravishankar K. Iyer | Gregory A. Worrell | Robert E. Gross | Kathryn A. Davis | Vaclav Kremen | Sameer A. Sheth | Michal T. Kucewicz | Michael R. Sperling | Yogatheesan Varatharajah | Brent M. Berry | Barbara C. Jobst | Bradley Lega | Krishnakant V. Saboo | G. Worrell | M. Sperling | Y. Varatharajah | M. Kucewicz | V. Kremen | S. Sheth | B. Lega | B. Jobst | R. Gross | K. Davis | R. Iyer
[1] Yuhui Ma,et al. Channel Selection for Optimizing Feature Extraction in an Electrocorticogram-Based Brain-Computer Interface , 2010, Journal of clinical neurophysiology : official publication of the American Electroencephalographic Society.
[2] Xiaoli Ma,et al. Eigenvector-based initial ranging process for OFDMA uplink systems , 2015, EURASIP Journal on Advances in Signal Processing.
[3] E. Niebur,et al. Neural Correlates of High-Gamma Oscillations (60–200 Hz) in Macaque Local Field Potentials and Their Potential Implications in Electrocorticography , 2008, The Journal of Neuroscience.
[4] E. Halgren,et al. High-frequency neural activity and human cognition: Past, present and possible future of intracranial EEG research , 2012, Progress in Neurobiology.
[5] Michael J. Kahana,et al. Neural Representations of Individual Stimuli in Humans Revealed by Gamma-Band Electrocorticographic Activity , 2009, The Journal of Neuroscience.
[6] Bernhard Schölkopf,et al. Robust EEG Channel Selection across Subjects for Brain-Computer Interfaces , 2005, EURASIP J. Adv. Signal Process..
[7] G. Worrell,et al. Interictal high-frequency oscillations in focal human epilepsy. , 2016, Current opinion in neurology.
[8] Ravishankar K. Iyer,et al. A Computationally Efficient Model for Predicting Successful Memory Encoding Using Machine-Learning-based EEG Channel Selection , 2019, 2019 9th International IEEE/EMBS Conference on Neural Engineering (NER).
[9] Michael J. Kahana,et al. Foundations of Human Memory , 2012 .
[10] Wei Sun,et al. A Semisupervised Support Vector Machines Algorithm for BCI Systems , 2007, Comput. Intell. Neurosci..
[11] Kathryn A Davis,et al. Electrophysiological Signatures of Spatial Boundaries in the Human Subiculum , 2017, The Journal of Neuroscience.
[12] Rajesh P. N. Rao,et al. Neural correlates of learning in an electrocorticographic motor-imagery brain-computer interface. , 2014, Brain computer interfaces.
[13] Matt Stead,et al. Behavioral state classification in epileptic brain using intracranial electrophysiology , 2017, Journal of neural engineering.
[14] N. Logothetis,et al. Neurophysiological investigation of the basis of the fMRI signal , 2001, Nature.
[15] N. Burgess,et al. Brain oscillations and memory , 2010, Current Opinion in Neurobiology.
[16] G. Ojemann,et al. Increased gamma-range activity in human sensorimotor cortex during performance of visuomotor tasks , 1999, Clinical Neurophysiology.
[17] G. Ojemann. Cortical organization of language , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[18] E.L. Glassman,et al. Reducing the Number of Channels for an Ambulatory Patient-Specific EEG-based Epileptic Seizure Detector by Applying Recursive Feature Elimination , 2006, 2006 International Conference of the IEEE Engineering in Medicine and Biology Society.
[19] Erin L. Rich,et al. Spatiotemporal dynamics of information encoding revealed in orbitofrontal high-gamma , 2017, Nature Communications.
[20] Hong Wang,et al. Channel Selection and Feature Extraction of ECoG-Based Brain-Computer Interface Using Band Power , 2010 .
[21] R. E. Madsen,et al. Channel selection for automatic seizure detection , 2012, Clinical Neurophysiology.
[22] M. Kahana,et al. Brain computer interface to enhance episodic memory in human participants , 2015, Front. Hum. Neurosci..
[23] Nicole M. Long,et al. Human intracranial high-frequency activity maps episodic memory formation in space and time , 2014, NeuroImage.
[24] Thierry Pun,et al. A channel selection method for EEG classification in emotion assessment based on synchronization likelihood , 2007, 2007 15th European Signal Processing Conference.
[25] Brent M. Berry,et al. Electrical Stimulation Modulates High γ Activity and Human Memory Performance , 2018, eNeuro.
[26] A. Pérez-Villalba. Rhythms of the Brain, G. Buzsáki. Oxford University Press, Madison Avenue, New York (2006), Price: GB £42.00, p. 448, ISBN: 0-19-530106-4 , 2008 .
[27] Fathi E. Abd El-Samie,et al. A review of channel selection algorithms for EEG signal processing , 2015, EURASIP Journal on Advances in Signal Processing.
[28] William W. Graves,et al. Where is the semantic system? A critical review and meta-analysis of 120 functional neuroimaging studies. , 2009, Cerebral cortex.
[29] J. Lisman,et al. Serial representation of items during working memory maintenance at letter-selective cortical sites , 2017, bioRxiv.
[30] F. Varela,et al. A quantitative study of gamma‐band activity in human intracranial recordings triggered by visual stimuli , 2000, The European journal of neuroscience.
[31] Brian Litt,et al. Repeated stimuli elicit diminished high-gamma electrocorticographic responses , 2014, NeuroImage.
[32] György Buzsáki,et al. High frequency oscillations in the intact brain , 2012, Progress in Neurobiology.
[33] Mark R. Bower,et al. High frequency oscillations are associated with cognitive processing in human recognition memory. , 2014, Brain : a journal of neurology.
[34] A. Engel,et al. Spectral fingerprints of large-scale neuronal interactions , 2012, Nature Reviews Neuroscience.
[35] Brent M. Berry,et al. Dissecting gamma frequency activity during human memory processing , 2017, Brain : a journal of neurology.
[36] Rajesh P. N. Rao,et al. Cortical activity during motor execution, motor imagery, and imagery-based online feedback , 2010, Proceedings of the National Academy of Sciences.
[37] Brendon O. Watson,et al. Temporal coupling of field potentials and action potentials in the neocortex , 2017, bioRxiv.
[38] Mark S. Leeson,et al. Artificial Intelligence in Medicine Channel Selection and Classification of Electroencephalogram Signals: an Artificial Neural Network and Genetic Algorithm-based Approach , 2022 .
[39] J. Winawer,et al. Neuronal synchrony and the relation between the blood-oxygen-level dependent response and the local field potential , 2017, PLoS biology.
[40] Matt Stead,et al. Automated unsupervised behavioral state classification using intracranial electrophysiology , 2019, Journal of neural engineering.
[41] Emery N. Brown,et al. The BRAIN Initiative: developing technology to catalyse neuroscience discovery , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[42] A. Engel,et al. Invasive recordings from the human brain: clinical insights and beyond , 2005, Nature Reviews Neuroscience.
[43] Michael J. Jutras,et al. Direct Brain Stimulation Modulates Encoding States and Memory Performance in Humans , 2017, Current Biology.
[44] M J Kahana,et al. Widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition , 2017, Nature Communications.
[45] Ravishankar K. Iyer,et al. Integrating artificial intelligence with real-time intracranial EEG monitoring to automate interictal identification of seizure onset zones in focal epilepsy , 2018, Journal of neural engineering.
[46] C. Elger,et al. Human memory formation is accompanied by rhinal–hippocampal coupling and decoupling , 2001, Nature Neuroscience.
[47] Kathryn A Davis,et al. Human Verbal Memory Encoding Is Hierarchically Distributed in a Continuous Processing Stream , 2019, eNeuro.
[48] Nicholas R. Hasulak,et al. Hippocampal gamma predicts associative memory performance as measured by acute and chronic intracranial EEG , 2018, Scientific Reports.
[49] J. Ludden,et al. Principles and Practice , 1998, Community-based Learning and Social Movements.
[50] Bernhard Schölkopf,et al. Methods Towards Invasive Human Brain Computer Interfaces , 2004, NIPS.
[51] Kung-Sik Chan,et al. Time Series Analysis: With Applications in R , 2010 .
[52] K. Albright,et al. Three-channel electroencephalogram montage in neonatal seizure detection and quantification. , 2011, Pediatric neurology.
[53] Rajesh P. N. Rao,et al. Spectral Changes in Cortical Surface Potentials during Motor Movement , 2007, The Journal of Neuroscience.
[54] Misha Pavel,et al. Channel Selection and Feature Projection for Cognitive Load Estimation Using Ambulatory EEG , 2007, Comput. Intell. Neurosci..
[55] R. Turner,et al. Deficient approaches to human neuroimaging , 2014, Front. Hum. Neurosci..