Event-related potentials for response inhibition in Parkinson's disease
暂无分享,去创建一个
[1] M. Hoehn,et al. Parkinsonism , 1967, Neurology.
[2] M. Rieger,et al. Inhibition of ongoing responses in patients with Parkinson’s disease , 2004, Journal of Neurology, Neurosurgery & Psychiatry.
[3] Markus Kiefer,et al. Executive control deficit in depression: event-related potentials in a Go/Nogo task , 2003, Psychiatry Research: Neuroimaging.
[4] Masashi Inoue,et al. Development of computerized Kana Pick-out Test for the neuropsychological examination , 2003, Comput. Methods Programs Biomed..
[5] Jeff Miller,et al. Effects of response readiness on reaction time and force output in people with Parkinson's disease. , 2002, Brain : a journal of neurology.
[6] H. Bokura,et al. Electrophysiological correlates for response inhibition in a Go/NoGo task , 2001, Clinical Neurophysiology.
[7] K. J. Bruin,et al. Response priming in a go/nogo task: do we have to explain the go/nogo N2 effect in terms of response activation instead of inhibition? , 2001, Clinical Neurophysiology.
[8] D. Tucker,et al. Scalp electrode impedance, infection risk, and EEG data quality , 2001, Clinical Neurophysiology.
[9] Mario Liotti,et al. Inhibitory control in children with attention-deficit/hyperactivity disorder: event-related potentials identify the processing component and timing of an impaired right-frontal response-inhibition mechanism , 2000, Biological Psychiatry.
[10] Joaquín M. Fuster,et al. Executive frontal functions , 2000, Experimental Brain Research.
[11] S. Yamaguchi,et al. Impaired novelty detection and frontal lobe dysfunction in Parkinson’s disease , 2000, Neuropsychologia.
[12] M. Kiefer,et al. Executive control is disturbed in schizophrenia: evidence from event-related potentials in a Go/NoGo task , 2000, Biological Psychiatry.
[13] R. Cabeza,et al. Imaging Cognition II: An Empirical Review of 275 PET and fMRI Studies , 2000, Journal of Cognitive Neuroscience.
[14] E. Stein,et al. Right hemispheric dominance of inhibitory control: an event-related functional MRI study. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[15] A. Fallgatter,et al. The NoGo-anteriorization as a neurophysiological standard-index for cognitive response control. , 1999, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[16] A. Fallgatter,et al. Age-related changes in the brain electrical correlates of response control , 1999, Clinical Neurophysiology.
[17] J. Hohnsbein,et al. ERP components in Go/Nogo tasks and their relation to inhibition. , 1999, Acta psychologica.
[18] Nogo event-related potentials in Parkinson's disease. , 1999, Electroencephalography and clinical neurophysiology. Supplement.
[19] L. Balázs,et al. Effects of cue information on response production and inhibition measured by event-related potentials. , 1999, Acta physiologica Hungarica.
[20] A. Fallgatter,et al. Three-dimensional tomography of event-related potentials during response inhibition: evidence for phasic frontal lobe activation. , 1998, Electroencephalography and clinical neurophysiology.
[21] G. Kim,et al. Dopaminergic influences on the P300 abnormality in Parkinson's disease , 1998, Journal of the Neurological Sciences.
[22] Y. Miyashita,et al. No‐go dominant brain activity in human inferior prefrontal cortex revealed by functional magnetic resonance imaging , 1998, The European journal of neuroscience.
[23] Thomas E. Nichols,et al. Anterior cingulate gyrus dysfunction and selective attention deficits in schizophrenia: [15O]H2O PET study during single-trial Stroop task performance. , 1997, The American journal of psychiatry.
[24] T. Robbins,et al. Dissociable Forms of Inhibitory Control within Prefrontal Cortex with an Analog of the Wisconsin Card Sort Test: Restriction to Novel Situations and Independence from “On-Line” Processing , 1997, The Journal of Neuroscience.
[25] Jonathan D. Cohen,et al. A Developmental Functional MRI Study of Prefrontal Activation during Performance of a Go-No-Go Task , 1997, Journal of Cognitive Neuroscience.
[26] H. Tachibana,et al. Electrophysiological analysis of cognitive slowing in Parkinson's disease , 1997, Journal of the Neurological Sciences.
[27] Andreas J Fallgatter,et al. Right frontal activation during the continuous performance test assessed with near-infrared spectroscopy in healthy subjects , 1997, Neuroscience Letters.
[28] R. Robinson,et al. Mechanism of disinhibition after brain lesions. , 1997, The Journal of nervous and mental disease.
[29] R. Beninger,et al. Impaired Incentive Learning in Treated Parkinson’s Disease , 1996, Canadian Journal of Neurological Sciences / Journal Canadien des Sciences Neurologiques.
[30] B. Kopp,et al. N2, P3 and the lateralized readiness potential in a nogo task involving selective response priming. , 1996, Electroencephalography and clinical neurophysiology.
[31] N Birbaumer,et al. P3 and contingent negative variation in Parkinson's disease. , 1996, Electroencephalography and clinical neurophysiology.
[32] Event-related potentials in Parkinson's disease. , 1996, Electromyography and clinical neurophysiology.
[33] J. Greene. Contributions to Neuropsychological Assessment , 1995 .
[34] S. Andrews,et al. ERP indices of auditory selective attention in aging and Parkinson's disease. , 1995, Psychophysiology.
[35] M. Hallett,et al. Motor program memory storage in Parkinson's disease patients tested with a delayed response task , 2004, Movement disorders : official journal of the Movement Disorder Society.
[36] M Hallett,et al. Induction of errors in a delayed response task by repetitive transcranial magnetic stimulation of the dorsolateral prefrontal cortex. , 1994, Neuroreport.
[37] Sylvan Kornblum,et al. Changes in medial cortical blood flow with a stimulus-response compatibility task , 1994, Neuropsychologia.
[38] D. Tucker. Spatial sampling of head electrical fields: the geodesic sensor net. , 1993, Electroencephalography and clinical neurophysiology.
[39] Karl J. Friston,et al. Investigations of the functional anatomy of attention using the stroop test , 1993, Neuropsychologia.
[40] H. Tachibana,et al. P300 and Reaction Time in Parkinson's Disease , 1993, Journal of geriatric psychiatry and neurology.
[41] J. Viel,et al. Event-related potentials in Parkinson's disease: A 12-month follow-up study , 1993, Journal of the Neurological Sciences.
[42] Martin Eimer,et al. Effects of attention and stimulus probability on ERPs in a Go/Nogo task , 1993, Biological Psychology.
[43] J. Borod,et al. Set-shifting and spatial orientation in patients with Parkinson's disease. , 1992, Journal of clinical and experimental neuropsychology.
[44] H. Tachibana,et al. Actively and passively evoked P3 latency of event-related potentials in Parkinson's disease , 1992, Journal of the Neurological Sciences.
[45] E. Jodo,et al. Relation of a negative ERP component to response inhibition in a Go/No-go task. , 1992, Electroencephalography and clinical neurophysiology.
[46] Klaus P. Ebmeier,et al. Event related potentials, reaction time, and cognitive performance in idiopathic Parkinson's disease , 1992, Biological Psychology.
[47] P. Stanzione,et al. P300 variations in parkinsonian patients before and during dopaminergic monotherapy: a suggested dopamine component in P300. , 1991, Electroencephalography and clinical neurophysiology.
[48] L. Findley,et al. Dopaminergic induced changes in cognitive and motor processing in Parkinson's disease: an electrophysiological investigation. , 1991, Journal of neurology, neurosurgery, and psychiatry.
[49] M S Buchsbaum,et al. Glucose Metabolic Rate in Normals and Schizophrenics During the Continuous Performance Test Assessed by Positron Emission Tomography , 1990, British Journal of Psychiatry.
[50] C. Marsden,et al. Cognitive function in Parkinson's disease: From description to theory , 1990, Trends in Neurosciences.
[51] F Lhermitte,et al. Cognitive slowing in Parkinson's disease fails to respond to levodopa treatment , 1989, Neurology.
[52] F. Perrin,et al. Spherical splines for scalp potential and current density mapping. , 1989, Electroencephalography and clinical neurophysiology.
[53] C. Marsden,et al. 'Frontal' cognitive function in patients with Parkinson's disease 'on' and 'off' levodopa. , 1988, Brain : a journal of neurology.
[54] A. Kok. Effects of degradation of visual stimuli on components of the event-related potential (ERP) in go/nogo reaction tasks , 1986, Biological Psychology.
[55] C. C. Wood,et al. Scalp distributions of event-related potentials: an ambiguity associated with analysis of variance models. , 1985, Electroencephalography and clinical neurophysiology.
[56] R. Mayeux,et al. Reaction time and vigilance in Parkinson's disease. Possible role of altered norepinephrine metabolism. , 1984, Archives of neurology.
[57] H G Vaughan,et al. Manipulation of event-related potential manifestations of information processing stages. , 1982, Science.
[58] K. Syndulko,et al. Cognition in Parkinson disease: An event‐related potential perspective , 1982, Annals of neurology.
[59] B. Milner. Effects of Different Brain Lesions on Card Sorting: The Role of the Frontal Lobes , 1963 .