Brain function assessment in different conscious states
暂无分享,去创建一个
Adile Oniz | Onur Bayazit | Murat Ozgoren | A. Oniz | M. Ozgoren | O. Bayazit | N. Gokmen | Sibel Kocaaslan | Necati Gokmen | S. Kocaaslan
[1] A Comparison of Auditory Evoked Potentials Derived From a Monitor Integrated Module Versus Standard Technique , 2009, Journal of neurosurgical anesthesiology.
[2] F. Mauguière,et al. Brain Processing of Stimulus Deviance During Slow‐Wave and Paradoxical Sleep: A Study of Human Auditory Evoked Responses Using the Oddball Paradigm , 1995, Journal of clinical neurophysiology : official publication of the American Electroencephalographic Society.
[3] K. Pope,et al. Physiological and pathological spindling phenomena have similar regional EEG power distributions , 2004, Brain Research.
[4] M. Koskinen,et al. Evoked EEG patterns during burst suppression with propofol. , 2004, British journal of anaesthesia.
[5] Yingxu Wang,et al. Discovering the Capacity of Human Memory , 2003 .
[6] P. Anderer,et al. Non-invasive electrophysiological neuroimaging of sleep , 2002 .
[7] K. Hugdahl. Dichotic Listening in the study of auditory laterality. , 2003 .
[8] Alexander A. Fingelkurts,et al. Increased local and decreased remote functional connectivity at EEG alpha and beta frequency bands in opioid-dependent patients , 2006, Psychopharmacology.
[9] R. Näätänen,et al. Measurement of extensive auditory discrimination profiles using the mismatch negativity (MMN) of the auditory event-related potential (ERP) , 2007, Clinical Neurophysiology.
[10] C. Escera,et al. Auditory information processing during human sleep as revealed by event-related brain potentials , 2001, Clinical Neurophysiology.
[11] R. Kivisaari,et al. Reorganization of the composition of brain oscillations and their temporal characteristics during opioid withdrawal , 2008, Journal of psychopharmacology.
[12] S. Bressler,et al. Operational principles of neurocognitive networks. , 2006, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[13] C. Phillips,et al. Impaired Effective Cortical Connectivity in Vegetative State: Preliminary Investigation Using PET , 1999, NeuroImage.
[14] E. Wolpert. A Manual of Standardized Terminology, Techniques and Scoring System for Sleep Stages of Human Subjects. , 1969 .
[15] T. Sejnowski,et al. Thalamocortical oscillations in the sleeping and aroused brain. , 1993, Science.
[16] D. Lehmann,et al. Low resolution electromagnetic tomography: a new method for localizing electrical activity in the brain. , 1994, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[17] R Cammann,et al. Event-related potentials to pitch change in an auditory stimulus sequence during sleep. , 1987, Electroencephalography and clinical neurophysiology. Supplement.
[18] R. Näätänen. The Mismatch Negativity: A Powerful Tool for Cognitive Neuroscience , 1995, Ear and hearing.
[19] Steven Laureys,et al. Posterior cingulate, precuneal and retrosplenial cortices: cytology and components of the neural network correlates of consciousness. , 2005, Progress in brain research.
[20] A. Cavanna,et al. The precuneus: a review of its functional anatomy and behavioural correlates. , 2006, Brain : a journal of neurology.
[21] Adile Oniz,et al. Brain asymmetry measurement using EMISU (embedded interactive stimulation unit) in applied brain biophysics , 2009, Comput. Biol. Medicine.
[22] S. Butler,et al. Effect of propofol anaesthesia on the event-related potential mismatch negativity and the auditory-evoked potential N1. , 2002, British journal of anaesthesia.
[23] Avery Tung,et al. Anesthesia and sleep. , 2004, Sleep medicine reviews.
[24] W. Klimesch,et al. EEG alpha oscillations: The inhibition–timing hypothesis , 2007, Brain Research Reviews.
[25] S. Uchida,et al. Sleep spindles in human prefrontal cortex: an electrocorticographic study , 2003, Neuroscience Research.
[26] M. Özgören,et al. Analysis of non-REM sleep staging with electroencephalography bispectral index , 2008 .
[27] A Kok,et al. Event‐related potentials to tones in the absence and presence of sleep spindles , 1997, Journal of sleep research.
[28] E. Mignot,et al. Narcolepsy with cataplexy , 2007, The Lancet.
[29] R D Pascual-Marqui,et al. Standardized low-resolution brain electromagnetic tomography (sLORETA): technical details. , 2002, Methods and findings in experimental and clinical pharmacology.
[30] Anne-Marie Christin,et al. Text and image , 1995, European Review.
[31] F. Acar Savaci,et al. Continuous time wavelet entropy of auditory evoked potentials , 2010, Comput. Biol. Medicine.
[32] R. Näätänen. The role of attention in auditory information processing as revealed by event-related potentials and other brain measures of cognitive function , 1990, Behavioral and Brain Sciences.
[33] K. E N N E T H H U G D. Symmetry and asymmetry in the human brain , 2005 .
[34] UnCheol Lee,et al. Propofol induction reduces the capacity for neural information integration: Implications for the mechanism of consciousness and general anesthesia , 2008, Consciousness and Cognition.
[35] A. Oniz,et al. Spectral Pattern Analysis of Propofol Induced Spindle Oscillations in the Presence of Auditory Stimulations , 2010, The open neuroimaging journal.
[36] J. Jones,et al. Hearing and memory in anaesthetised patients. , 1986, British medical journal.
[37] F. D. Silva,et al. Source localization of MEG sleep spindles and the relation to sources of alpha band rhythms , 2002, Clinical Neurophysiology.
[38] Fabio Babiloni,et al. Consciousness and its Measures: Joint Workshop for COST Actions NeuroMath and Consciousness , 2010 .
[39] A. Rechtschaffen. A manual of standardized terminology, techniques and scoring system for sleep of human subjects , 1968 .
[40] Richard R. McNeer,et al. Influence of Auditory Stimulation Rates on Evoked Potentials during General Anesthesia: Relation between the Transient Auditory Middle-latency Response and the 40-Hz Auditory Steady State Response , 2009, Anesthesiology.
[41] Tarmo Lipping,et al. Comparison of the Properties of EEG Spindles in Sleep and Propofol Anesthesia , 2006, 2006 International Conference of the IEEE Engineering in Medicine and Biology Society.
[42] Gudrun Stockmanns,et al. Detection of Consciousness by Electroencephalogram and Auditory Evoked Potentials , 2005, Anesthesiology.
[43] H. Bastuji,et al. Evoked potentials as a tool for the investigation of human sleep. , 1999, Sleep medicine reviews.
[44] S. Sherman. Tonic and burst firing: dual modes of thalamocortical relay , 2001, Trends in Neurosciences.
[45] O. Güntürkün,et al. Dichotic listening revisited: Trial-by-trial ERP analyses reveal intra- and interhemispheric differences , 2009, Neuropsychologia.
[46] G. Plourde. Auditory evoked potentials. , 2006, Best practice & research. Clinical anaesthesiology.
[47] Manuel Schabus,et al. Interindividual sleep spindle differences and their relation to learning-related enhancements , 2008, Brain Research.
[48] D. Yarnitsky,et al. Neurophysiology of the cortical pain network: revisiting the role of S1 in subjective pain perception via standardized low-resolution brain electromagnetic tomography (sLORETA). , 2008, Journal of Pain.
[49] M. Özgören,et al. On the analysis of BIS stage epochs via fuzzy clustering , 2010, Biomedizinische Technik. Biomedical engineering.
[50] J. Palva,et al. New vistas for α-frequency band oscillations , 2007, Trends in Neurosciences.
[51] J. Rohrbaugh,et al. Current trends in event-related potential research , 1987 .
[52] G Klösch,et al. Low-resolution brain electromagnetic tomography revealed simultaneously active frontal and parietal sleep spindle sources in the human cortex , 2001, Neuroscience.