P300, habituation, and response mode

[1]  P. Groves,et al.  Habituation: a dual-process theory. , 1970, Psychological review.

[2]  E. N. Sokolov Brain Functions: Neuronal Mechanisms of Learning and Memory , 1977 .

[3]  G. Kerkhof Interindividual differences in the diurnal variation of the human auditory evoked potential , 1980 .

[4]  E. Donchin,et al.  P300 and tracking difficulty: evidence for multiple resources in dual-task performance. , 1980, Psychophysiology.

[5]  E. Donchin Presidential address, 1980. Surprise!...Surprise? , 1981, Psychophysiology.

[6]  W. Pritchard Psychophysiology of P300. , 1981, Psychological bulletin.

[7]  Bickford Rg,et al.  Alternating cerebral hemispheric activity and the lateralization of autonomic nervous function. , 1983 .

[8]  C D Wickens,et al.  An Analysis of the Processing Requirements of a Complex Perceptual-Motor Task , 1983, Human factors.

[9]  E. Donchin,et al.  Performance of concurrent tasks: a psychophysiological analysis of the reciprocity of information-processing resources. , 1983, Science.

[10]  T W Picton,et al.  The effects of age on human event-related potentials. , 1984, Psychophysiology.

[11]  C D Wickens,et al.  Processing of stimulus properties: evidence for dual-task integrality. , 1985, Journal of experimental psychology. Human perception and performance.

[12]  T. Monk,et al.  Interactions between inter-individual and inter-task differences in the diurnal variation of human performance. , 1986, Chronobiology international.

[13]  A. D. Fisk,et al.  The effects of practice and task structure on components of the event-related brain potential. , 1986, Psychophysiology.

[14]  M. Verbaten,et al.  Different effects of uncertainty and complexity on single trial visual ERPs and the SCR-OR in non-signal conditions. , 1986, Psychophysiology.

[15]  J. Polich,et al.  P300 development from auditory stimuli. , 1986, Psychophysiology.

[16]  E. Donchin,et al.  Cognitive Psychophysiology and Human Information Processing , 1986 .

[17]  R. Johnson A triarchic model of P300 amplitude. , 1986, Psychophysiology.

[18]  S. Shappell,et al.  No decrement in visual P300 amplitude during extended performance of the oddball task. , 1986, The International journal of neuroscience.

[19]  H. Shibasaki,et al.  Human auditory and somatosensory event-related potentials: effects of response condition and age. , 1987, Electroencephalography and clinical neurophysiology.

[20]  E. Sirevaag,et al.  A Psychophysiological Assessment of Operator Workload During Simulated Flight Missions , 1987, Human factors.

[21]  John Polich,et al.  Response mode and P300 from auditory stimuli , 1987, Biological Psychology.

[22]  E. Donchin,et al.  Is the P300 component a manifestation of context updating? , 1988, Behavioral and Brain Sciences.

[23]  T Kobayashi,et al.  Short and long ultradian EEG components in daytime arousal. , 1988, Electroencephalography and clinical neurophysiology.

[24]  P. Badia,et al.  Habituation of P300 to target stimuli , 1989, Physiology & Behavior.

[25]  G Fein,et al.  P300 latency variability in normal elderly: effects of paradigm and measurement technique. , 1989, Electroencephalography and clinical neurophysiology.

[26]  J. Polich Habituation of P300 from auditory stimuli , 1989, Psychobiology.

[27]  E. Jodo,et al.  Effects of practice on the P300 in a Go/NoGo task. , 1990, Electroencephalography and clinical neurophysiology.

[28]  D. Strayer,et al.  Attentional Requirements of Automatic and Controlled Processing , 1990 .

[29]  Werner Sommer,et al.  Consciousness of attention and expectancy as reflected in event-related potentials and reaction times , 1990 .

[30]  J. Polich,et al.  P300 and time of day: Circadian rhythms, food intake, and body temperature , 1990, Biological Psychology.

[31]  Pietro Badia,et al.  Time of day, repeated testing, and interblock interval effects on P300 amplitude , 1990, Physiology & Behavior.

[32]  R. Verleger,et al.  The instruction to refrain from blinking affects auditory P3 and N1 amplitudes. , 1991, Electroencephalography and clinical neurophysiology.