Baseline gamma power during auditory steady-state stimulation in schizophrenia
暂无分享,去创建一个
[1] Richard J. Davidson,et al. Identifying robust and sensitive frequency bands for interrogating neural oscillations , 2010, NeuroImage.
[2] Miles A Whittington,et al. Interneuron Diversity series: Inhibitory interneurons and network oscillations in vitro , 2003, Trends in Neurosciences.
[3] C. McBain,et al. N-methyl-D-aspartic acid receptor structure and function. , 1994, Physiological reviews.
[4] Jingyi Ma,et al. The supramammillo–septal–hippocampal pathway mediates sensorimotor gating impairment and hyperlocomotion induced by MK-801 and ketamine in rats , 2007, Psychopharmacology.
[5] T. Kaneko,et al. Glutamatergic deficits and parvalbumin-containing inhibitory neurons in the prefrontal cortex in schizophrenia , 2009, BMC psychiatry.
[6] Ettore Lettich,et al. Ten Percent Electrode System for Topographic Studies of Spontaneous and Evoked EEG Activities , 1985 .
[7] C. Carter,et al. Impairments in frontal cortical gamma synchrony and cognitive control in schizophrenia. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[8] Lief E. Fenno,et al. Neocortical excitation/inhibition balance in information processing and social dysfunction , 2011, Nature.
[9] R. McCarley,et al. Left auditory cortex gamma synchronization and auditory hallucination symptoms in schizophrenia , 2009, BMC Neuroscience.
[10] M. Scherg,et al. Intracerebral Sources of Human Auditory Steady-State Responses , 2004, Brain Topography.
[11] Marcia A. Bockbrader,et al. Steady state visual evoked potential abnormalities in schizophrenia , 2005, Clinical Neurophysiology.
[12] J. Pernier,et al. Stimulus Specificity of Phase-Locked and Non-Phase-Locked 40 Hz Visual Responses in Human , 1996, The Journal of Neuroscience.
[13] J. Olney,et al. NMDA antagonist neurotoxicity: mechanism and prevention. , 1991, Science.
[14] Hannah Monyer,et al. NMDA Receptor Ablation on Parvalbumin-Positive Interneurons Impairs Hippocampal Synchrony, Spatial Representations, and Working Memory , 2010, Neuron.
[15] R. Coppola,et al. Schizophrenia: reduced signal-to-noise ratio and impaired phase-locking during information processing , 2000, Clinical Neurophysiology.
[16] G. González-Burgos,et al. Perisomatic inhibition and cortical circuit dysfunction in schizophrenia , 2011, Current Opinion in Neurobiology.
[17] B. Moghaddam,et al. NMDA Receptor Hypofunction Produces Opposite Effects on Prefrontal Cortex Interneurons and Pyramidal Neurons , 2007, The Journal of Neuroscience.
[18] Stanislav Katina,et al. Aberrant EEG responses to gamma-frequency visual stimulation in schizophrenia , 2010, Schizophrenia Research.
[19] P. Jonas,et al. Synaptic mechanisms of synchronized gamma oscillations in inhibitory interneuron networks , 2007, Nature Reviews Neuroscience.
[20] Leif H. Finkel,et al. Ketamine Modulates Theta and Gamma Oscillations , 2010, Journal of Cognitive Neuroscience.
[21] August B. Hollingshead,et al. Two Factor Index of Social Position , 1957 .
[22] R. McCarley,et al. Neural synchrony indexes disordered perception and cognition in schizophrenia. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[23] Stefan J Kiebel,et al. Parametric analysis of oscillatory activity as measured with EEG/MEG , 2005, Human brain mapping.
[24] K. Hugdahl,et al. Left Temporal Lobe Structural and Functional Abnormality Underlying Auditory Hallucinations in Schizophrenia , 2008, Front. Neurosci..
[25] Robert W. McCarley,et al. Sensory-Evoked Gamma Oscillations in Chronic Schizophrenia , 2008, Biological Psychiatry.
[26] Shlomit Yuval-Greenberg,et al. Saccadic spike potentials in gamma-band EEG: Characterization, detection and suppression , 2010, NeuroImage.
[27] D. Goff,et al. Converging Evidence of NMDA Receptor Hypofunction in the Pathophysiology of Schizophrenia , 2003, Annals of the New York Academy of Sciences.
[28] Robert W McCarley,et al. Gamma oscillation deficits and the onset and early progression of schizophrenia. , 2010, Harvard review of psychiatry.
[29] T. Crow,et al. Auditory cortex asymmetry, altered minicolumn spacing and absence of ageing effects in schizophrenia. , 2008, Brain : a journal of neurology.
[30] H J Keselman,et al. Repeated measures F tests and psychophysiological research: controlling the number of false positives. , 1980, Psychophysiology.
[31] D. Pinault,et al. N-Methyl d-Aspartate Receptor Antagonists Ketamine and MK-801 Induce Wake-Related Aberrant γ Oscillations in the Rat Neocortex , 2008, Biological Psychiatry.
[32] Niels G. Waller. The Scale for the Assessment of Negative Symptoms , 1995 .
[33] P. Pasqualetti,et al. Ketamine Increases Human Motor Cortex Excitability to Transcranial Magnetic Stimulation , 2003, The Journal of physiology.
[34] Valerie Kirsch,et al. Reduced Early Auditory Evoked Gamma-Band Response in Patients with Schizophrenia , 2010, Biological Psychiatry.
[35] R. S. Jones. The NMDA receptor Edited by J. C. Watkins and G. L. Collinridge. Oxford University Press, New York (1990) 242 pp. £45.00 , 1991, Neuroscience.
[36] Jessica A. Cardin,et al. A critical role for NMDA receptors in parvalbumin interneurons for gamma rhythm induction and behavior , 2011, Molecular Psychiatry.
[37] Tzyy-Ping Jung,et al. Independent Component Analysis of Electroencephalographic Data , 1995, NIPS.
[38] D. Lewis,et al. Cortical inhibitory neurons and schizophrenia , 2005, Nature Reviews Neuroscience.
[39] B. Christensen,et al. The role of cortical inhibition in the pathophysiology and treatment of schizophrenia , 2007, Brain Research Reviews.
[40] R. McCarley,et al. Long-range synchrony of γ oscillations and auditory hallucination symptoms in schizophrenia. , 2011, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[41] D. Javitt,et al. N-methyl-d-aspartate (NMDA) receptor dysfunction or dysregulation: The final common pathway on the road to schizophrenia? , 2010, Brain Research Bulletin.
[42] C. Carter,et al. Impairments in frontal cortical γ synchrony and cognitive control in schizophrenia , 2006, Proceedings of the National Academy of Sciences.
[43] K. Deisseroth,et al. Parvalbumin neurons and gamma rhythms enhance cortical circuit performance , 2009, Nature.
[44] T. Picton,et al. Age-related changes in transient and oscillatory brain responses to auditory stimulation in healthy adults 19-45 years old. , 2007, Cerebral cortex.
[45] R. McCarley,et al. γ-Band Auditory Steady-State Responses Are Impaired in First Episode Psychosis , 2008, Biological Psychiatry.
[46] G. Tononi,et al. Reduced evoked gamma oscillations in the frontal cortex in schizophrenia patients: a TMS/EEG study. , 2008, American Journal of Psychiatry.
[47] A. Belger,et al. NMDA receptor antagonist effects, cortical glutamatergic function, and schizophrenia: toward a paradigm shift in medication development , 2003, Psychopharmacology.
[48] T. Woo,et al. Density of glutamic acid decarboxylase 67 messenger RNA-containing neurons that express the N-methyl-D-aspartate receptor subunit NR2A in the anterior cingulate cortex in schizophrenia and bipolar disorder. , 2004, Archives of general psychiatry.
[49] P. O’Donnell,et al. Gamma and Delta Neural Oscillations and Association with Clinical Symptoms under Subanesthetic Ketamine , 2010, Neuropsychopharmacology.
[50] J. Ford,et al. Out-of-Synch and Out-of-Sorts: Dysfunction of Motor-Sensory Communication in Schizophrenia , 2008, Biological Psychiatry.
[51] Idil Cavus,et al. Slow transcranial magnetic stimulation, long-term depotentiation, and brain hyperexcitability disorders. , 2002, The American journal of psychiatry.
[52] Bita Moghaddam,et al. Activation of Glutamatergic Neurotransmission by Ketamine: A Novel Step in the Pathway from NMDA Receptor Blockade to Dopaminergic and Cognitive Disruptions Associated with the Prefrontal Cortex , 1997, The Journal of Neuroscience.
[53] Robert W. McCarley,et al. γ-Band Auditory Steady-State Responses Are Impaired in First Episode Psychosis , 2008, Biological Psychiatry.
[54] D. Ffytche,et al. The anatomy of conscious vision: an fMRI study of visual hallucinations , 1998, Nature Neuroscience.
[55] R. McCarley,et al. Abnormal Neural Synchrony in Schizophrenia , 2003, The Journal of Neuroscience.
[56] N. Alpert,et al. Impaired recruitment of the hippocampus during conscious recollection in schizophrenia , 1998, Nature Neuroscience.
[57] Jingyi Ma,et al. Relation between hippocampal γ waves and behavioral disturbances induced by phencyclidine and methamphetamine , 2000, Behavioural Brain Research.
[58] L. H. Finkel,et al. N-methyl-d-aspartic acid receptor antagonist–induced frequency oscillations in mice recreate pattern of electrophysiological deficits in schizophrenia , 2009, Neuroscience.
[59] K. Spencer. The Functional Consequences of Cortical Circuit Abnormalities on Gamma Oscillations in Schizophrenia: Insights from Computational Modeling , 2009, Front. Hum. Neurosci..
[60] M. Hasselmo,et al. Gamma frequency-range abnormalities to auditory stimulation in schizophrenia. , 1999, Archives of general psychiatry.
[61] Richard S. Ehrlichman,et al. Mouse behavioral endophenotypes for schizophrenia , 2010, Brain Research Bulletin.