The Comparative Neurology of Expectation: Stimulus Acquisition and Neurobiology of Anticipated and Unanticipated Input
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[1] Edward V. Evarts,et al. Electromyography in CNS Disorders , 1985, Neurology.
[2] M. Zaretsky,et al. Quantitative measurements of centrally and retinally generated saccadic suppression in a locust movement detector neurone. , 1982, The Journal of physiology.
[3] M. Timsitberthier. Variation contingente négative et composantes endogènes du potentiel évoqué , 1984 .
[4] P. B. Farel,et al. Habituation of a monosynaptic response in frog spinal cord: evidence for a presynaptic mechanism. , 1976, Journal of neurophysiology.
[5] E. Roy John,et al. Mechanisms of memory , 1967 .
[6] T. Bullock,et al. Evoked potentials in the central auditory system of alert porpoises to their own and artificial sounds. , 1972, Journal of neurobiology.
[7] J. Seal,et al. Activity of neurons in area 5 during a simple arm movement in monkeys before and after deafferentation of the trained limb , 1982, Brain Research.
[8] D. Margoliash. Acoustic parameters underlying the responses of song-specific neurons in the white-crowned sparrow , 1983, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[9] R. Murphey,et al. Experience modifies the plastic properties of identified neurons. , 1976, Science.
[10] E. N. Sokolov,et al. Neuronal mechanisms of the orienting reflex , 1975 .
[11] G. A. Kerkhof. Decision latency: The P3 component in auditory signal detection , 1978, Neuroscience Letters.
[12] Ultradian rhythms in waking behavior of rhesus monkeys , 1978, Physiology & Behavior.
[13] M. Egger. Sensitization and habituation of dorsal horn cells in cats. , 1978, The Journal of physiology.
[14] E. Carterette,et al. On habituation in the cochlear nucleus. , 1973, Science.
[15] B J Richmond,et al. Vision during saccadic eye movements. II. A corollary discharge to monkey superior colliculus. , 1980, Journal of neurophysiology.
[16] R. Hill,et al. Modifications of Receptive Fields of Cells in the Visual Cortex occurring Spontaneously and associated with Bodily Tilt , 1969, Nature.
[17] F. Strumwasser,et al. Comparative neurobiology : modes of communication in the nervous system , 1985 .
[18] R. Sperry. Neural basis of the spontaneous optokinetic response produced by visual inversion. , 1950, Journal of comparative and physiological psychology.
[19] I Kupfermann. Neurophysiology of learning. , 1975, Annual review of psychology.
[20] E R Kandel,et al. An analysis of dishabituation and sensitization of the gill-withdrawal reflex in Aplysia. , 1971, The International journal of neuroscience.
[21] P. Inchingolo,et al. Oculomotor corollary discharge in the cat pretectum. , 1984, Archives internationales de physiologie et de biochimie.
[22] T. H. Bullock,et al. Compound Potentials of the Brain, Ongoing and Evoked: Perspectives from Comparative Neurology , 1988 .
[23] E. Kandel,et al. A cellular mechanism of classical conditioning in Aplysia: activity-dependent amplification of presynaptic facilitation. , 1983, Science.
[24] H. Vanegas,et al. Comparative neurology of the optic tectum , 1984 .
[25] R. Curtis Graeber,et al. Rhythmic Aspects of Behavior , 2020 .
[26] D. Sparks,et al. Corollary discharge provides accurate eye position information to the oculomotor system. , 1983, Science.
[27] J. Shaw. EEG-brain dynamics E. Basar Elsevier/North-Holland, Amsterdam, 1980, pp. 411 Dfl. 184 , 1982, Biological Psychology.
[28] Vinogradova Os,et al. Comparator function of the hippocampus , 1972 .
[29] T. Tsuda. Contingent negative variation and the related thalamic activities. Observation on the responses evoked by ipsilateral and contralateral hand movements. , 1984, The Tokushima journal of experimental medicine.
[30] R. Wurtz,et al. Activity of superior colliculus in behaving monkey. 3. Cells discharging before eye movements. , 1972, Journal of neurophysiology.
[31] J. Ewert. Concepts in vertebrate neuroethology , 1985, Animal Behaviour.
[32] J. B. Ranck,et al. Studies on single neurons in dorsal hippocampal formation and septum in unrestrained rats. I. Behavioral correlates and firing repertoires. , 1973, Experimental neurology.
[33] B Bridgeman,et al. Sensory effects of eyepress are due to efference , 1984, Perception & psychophysics.
[34] B. Bridgeman. Cognitive factors in subjective stabilization of the visual world. , 1981, Acta psychologica.
[35] H. Mittelstaedt,et al. Reafferenzprinzip — Apologie und Kritik , 1971 .
[36] Deutsche Physiologische Gesellschaft,et al. Vorträge der Erlanger Physiologentagung 1970 , 1971 .
[37] R. Hawkins. A cellular mechanism of classical conditioning in Aplysia. , 1984, The Journal of experimental biology.
[38] D. M. MacKay,et al. Visual stability and motor control (reafference revisited) , 1974 .
[39] J. Ewert. Tectal Mechanisms That Underlie Prey-Catching and Avoidance Behaviors in Toads , 1984 .
[40] Edward L. Bennett,et al. Neural mechanisms of learning and memory , 1977 .
[41] Richard R. Fay,et al. Hearing and Sound Communication in Fishes , 1981, Proceedings in Life Sciences.
[42] B. Bridgeman,et al. Relation between cognitive and motor-oriented systems of visual position perception. , 1979 .
[43] S. Bressler,et al. Shadows of thought: shifting lateralization of human brain electrical patterns during brief visuomotor task. , 1983, Science.
[44] D. Mackay,et al. Towards an information-flow model of human behaviour. , 1956, British journal of psychology.
[45] S Sternberg,et al. Perception, Production, and Imitation of Time Ratios by Skilled Musicians , 1984, Annals of the New York Academy of Sciences.
[46] E. Blass. Handbook of behavioral neurobiology , 1988 .
[47] R. Hari,et al. Auditory evoked transient and sustained potentials in the human EEG: I. Effects of expectation of stimuli , 1979, Psychiatry Research.
[48] K Toyama,et al. Integration of retinal and motor signals of eye movements in striate cortex cells of the alert cat. , 1984, Journal of neurophysiology.
[49] K. Bernardo,et al. Primitive nervous systems: peripheral habituation in decerebrate polyclad flatworms. , 1977, Journal of neurobiology.
[50] M. Kutas,et al. Electrophysiology of cognitive processing. , 1983, Annual review of psychology.
[51] D. Alkon,et al. Input and output changes of an identified neural pathway are correlated with associative learning in Hermissenda , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[52] J. Jacklet,et al. Neural processes in habituation and sensitization in model systems , 1974 .
[53] C. K. Peck,et al. ‘Corollary discharge’ neurons in cat superior colliculus , 1984, Brain Research.
[54] M. Treisman. Temporal Rhythms and Cerebral Rhythms a , 1984, Annals of the New York Academy of Sciences.
[55] D. Perrett,et al. Neural Mechanisms Underlying the Visual Analysis of Faces , 1983 .
[56] L. Stark,et al. Voluntary nystagmus, saccadic suppression, and stabilization of the visual world , 1980, Vision Research.
[57] P. Balaban,et al. Neuronal correlates of aversive learning in command neurons for avoidance behavior ofHelix lucorum L. , 1984, Brain Research.
[58] B. Bridgeman. Adaptation and the two-visual-systems hypothesis , 1979 .
[59] W. Ritter,et al. Effects of expectation on negative potentials during visual processing. , 1985, Electroencephalography and clinical neurophysiology.
[60] R. Valle,et al. Expectation effects in alpha wave control. , 1975, Psychophysiology.
[61] P. Laming. Relationships Between the Responses of Visual Units, EEGs and Slow Potential Shifts in the Optic Tectum of the Toad , 1983 .
[62] J. Stebel,et al. On central nervous minute-periodicity and its coordination. , 1971, Activitas nervosa superior.
[63] M. Sanders. Handbook of Sensory Physiology , 1975 .
[64] S Sutton,et al. Emitted P300 and slow wave event-related potentials in guessing and detection tasks. , 1980, Electroencephalography and clinical neurophysiology.
[65] Donald M. MacKay,et al. Visual Stability and Voluntary Eye Movements , 1973 .
[66] Neuronal elements of the orienting response. Microrecordings and stimulation experiments in rabbits. , 1972 .
[67] M. Brazier,et al. THE CENTRAL NERVOUS SYSTEM AND BEHAVIOR , 1961 .
[68] Peck Ck,et al. Saccade-related neurons in cat superior colliculus: pandirectional movement cells with postsaccadic responses. , 1984 .
[69] D. C. Wood. Stimulus specific habituation in a protozoan. , 1973, Physiology & behavior.
[70] L. Stark,et al. Role of corollary discharge in space constancy , 1983, Perception & psychophysics.
[71] E. Evarts,et al. Transcortical reflexes and servo control of movement. , 1981, Canadian journal of physiology and pharmacology.
[72] Henri Begleiter,et al. Evoked Brain Potentials and Behavior , 1979, The Downstate Series of Research in Psychiatry and Psychology.
[73] T. Bullock. Comparisons of the Electric and Acoustic Senses and their Central Processing , 1981 .
[74] J. Defrance. The Septal Nuclei , 2013, Advances in Behavioral Biology.
[75] T Szabo,et al. Pathways of the electric organ discharge command and its corollary discharges in mormyrid fish , 1983, The Journal of comparative neurology.
[76] David L. Sparks,et al. Movement fields of saccade-related burst neurons in the monkey superior colliculus , 1980, Brain Research.
[77] Steven A. Hillyard,et al. Decision-related cortical potentials during an auditory signal detection task with cued observation intervals , 1975 .
[78] J. Bryan,et al. Presynaptic inhibition: the mechanism of protection from habituation of the crayfish lateral giant fibre escape response. , 1977, The Journal of physiology.
[79] T. Yamaguchi,et al. Integration of visual stimuli by the crayfish central nervous system. , 1967, The Journal of experimental biology.
[80] Protection from habituation of the crayfish lateral giant fibre escape response , 1977, The Journal of physiology.
[81] Vinogradova Os. Dynamic classification of the ractions of hippocampal neurons to sensory stimuli. , 1966 .
[82] W. Freeman. The physiological basis of mental images. , 1983, Biological psychiatry.