Implicit versus explicit computation

[1]  H. K. Hartline,et al.  THE RECEPTIVE FIELDS OF OPTIC NERVE FIBERS , 1940 .

[2]  G. Baerends The functional organization of behaviour , 1976, Animal Behaviour.

[3]  W. F. Blair,et al.  The Amphibian visual system : a multidisciplinary approach , 1976 .

[4]  G. Baerends,et al.  THE HERRING GULL AND ITS EGG .2. THE RESPONSIVENESS TO EGG-FEATURES , 1982 .

[5]  D. Broom Biology of Behaviour: Mechanisms, Functions and Applications , 1981 .

[6]  S. Emerson SKULL SHAPE IN FROGS-CORRELATIONS WITH DIET , 1985 .

[7]  H. Karten,et al.  Basal ganglionic pathways to the tectum: Studies in reptiles , 1980, The Journal of comparative neurology.

[8]  J. Ewert Advances in vertebrate neuroethology , 1982, Trends in Neurosciences.

[9]  J. Ewert Concepts in vertebrate neuroethology , 1985, Animal Behaviour.

[10]  T. Nagel What is it like to be a Bat , 1974 .

[11]  Robert C. Eaton,et al.  Neural Mechanisms of Startle Behavior , 1984 .

[12]  Henning Scheich,et al.  Functional activation in the auditory system of the rat produced by arousing reticular stimulation: a 2-deoxyglucose study , 1984, Brain Research.

[13]  P. Grobstein Analysis of Visual Behavior, David J. Ingle, Melvyn A. Goodale, Richard J.W. Mansfield (Eds.). MIT press, Cambridge, MA and London (1982), 834 , 1983 .

[14]  K. Rubinson Projections of the Tectum Opticum of the Frog; pp. 529–544 , 1968 .

[15]  James L. McClelland,et al.  Parallel distributed processing: explorations in the microstructure of cognition, vol. 1: foundations , 1986 .

[16]  J. C. Fentress Simpler networks and behavior , 1976 .

[17]  D. Ingle,et al.  Receptive field changes produced in frog thalamic units by lesions of the optic tectum. , 1973, Brain research.

[18]  G. Lázár The projection of the retinal quadrants on the optic centres in the frog. A terminal degeneration study. , 1971, Acta morphologica Academiae Scientiarum Hungaricae.

[19]  D. O. Hebb,et al.  The organization of behavior , 1988 .

[20]  J. Lettvin,et al.  Anatomy and physiology of a binocular system in the frograna pipiens , 1980, Brain Research.

[21]  J. L. Gould,et al.  Learning by Instinct , 1987 .

[22]  M. Sanders Handbook of Sensory Physiology , 1975 .

[23]  M. Kovac,et al.  The command neuron and the organization of movement , 1981, Trends in Neurosciences.

[24]  M. Konishi,et al.  Birdsong: from behavior to neuron. , 1985, Annual review of neuroscience.

[25]  E. Blass Handbook of behavioral neurobiology , 1988 .

[26]  W. R. Garner To perceive is to know. , 1966 .

[27]  William Rowan,et al.  The Study of Instinct , 1953 .

[28]  R. C. Eaton,et al.  The command neuron concept: Good in theory, difficult to justify in practice , 1986, Behavioral and Brain Sciences.

[29]  Orlov OIu,et al.  Contancy of color perception in the grey toad , 1975 .

[30]  Ewert Jp,et al.  [Quantitive analysis of stimulus-reaction relations in the visually released orienting component of the prey-catching behaviour of the common toad (Bufo buf L.)]. , 1969 .

[31]  S. Udin,et al.  Topographic projections between the nucleus isthmi and the tectum of the frog rana pipiens , 1978, The Journal of comparative neurology.

[32]  P. Grobstein Between the retinotectal projection and directed movement: topography of a sensorimotor interface. , 1988, Brain, behavior and evolution.

[33]  D H HUBEL,et al.  RECEPTIVE FIELDS AND FUNCTIONAL ARCHITECTURE IN TWO NONSTRIATE VISUAL AREAS (18 AND 19) OF THE CAT. , 1965, Journal of neurophysiology.

[34]  Ewert Jp Electric stimulation of the retinal projection field in the midbrain of the terrestrial toad (Bufo bufo L.) , 1967 .

[35]  Jörg-Peter Ewert,et al.  Releasing Stimuli for Antipredator Behaviour in the Common Toad Bufo b uFo (L.) , 1979 .

[36]  J. Allman,et al.  Stimulus specific responses from beyond the classical receptive field: neurophysiological mechanisms for local-global comparisons in visual neurons. , 1985, Annual review of neuroscience.

[37]  P. Grobstein,et al.  Neuronal organization underlying visually elicited prey orienting in the frog—I. Effects of various unilateral lesions , 1987, Neuroscience.

[38]  C. R. Fourtner,et al.  Flight Activity Initiated via Giant Interneurons of the Cockroach: Evidence for Bifunctional Trigger Interneurons , 1980, Science.

[39]  G. Hoyle The scope of neuroethology , 1984, Behavioral and Brain Sciences.

[40]  Jrg-Peter Ewert Untersuchungen ber die Anteile zentralnervser Aktionen an der taxisspezifischen Ermdung beim Beutefang der Erdkrte (Bufo bufo L.)@@@Investigations on central nervous actions to the taxis-specific fatigue in the prey-catching behaviour of the common toad (Bufo bufo L.) , 1967 .

[41]  J. Ewert,et al.  Neuroethology , 1980, Springer Berlin Heidelberg.

[42]  G. Lázár Role of the accessory optic system in the optokinetic nystagmus of the frog. , 1972, Brain, behavior and evolution.

[43]  J C Fentress,et al.  Early ontogeny of face grooming in mice. , 1985, Developmental psychobiology.

[44]  Herbert Lin,et al.  The development of software for ballistic-missile defense , 1985 .

[45]  L. A. Jeffress,et al.  Cerebral Mechanisms in Behavior , 1953 .

[46]  J. Ewert,et al.  Influence of stationary and moving textured backgrounds on the response of visual neurons in toads (Bufo bufo L.). , 1988, Brain, behavior and evolution.

[47]  R. Hoy,et al.  Initiation of behavior by single neurons: the role of behavioral context. , 1984, Science.

[48]  P. Grobstein,et al.  The nucleus isthmi as an intertectal relay for the ipsilateral oculotectal projection in the frog, Rana pipiens , 1983, The Journal of comparative neurology.

[49]  D. Hood,et al.  The Frog Ganglion Cell: Not a Feature Detector and Not a Monkey Cortical Cell , 1981, Perception.

[50]  G. Székely,et al.  Tectal neurons of the frog: Intracellular recording and labeling with cobalt electrodes , 1986, The Journal of comparative neurology.

[51]  J. Sprague,et al.  Interaction of Cortex and Superior Colliculus in Mediation of Visually Guided Behavior in the Cat , 1966, Science.

[52]  K. Dierickx Hypothalamo-hypophysial regulation of food intake in Rana temporaria. , 1969, General and comparative endocrinology.

[53]  D. Ingle Size preferences for prey-catching in frogs: relationship to motivational state. , 1973, Behavioral Biology.

[54]  P. Laming,et al.  Brain mechanisms of behaviour in lower vertebrates , 1983 .

[55]  Hugh B. Cott,et al.  The Effectiveness of Protective Adaptations in the Hive Bee, illustrated by Experiments on the Feeding Reactions, Habit Formation, and Memory of the Common Toad (Bufo bufo bufo) , 1936 .

[56]  J. Konorski Integrative activity of the brain , 1967 .

[57]  O. I. Fukson,et al.  Adaptability of innate motor patterns and motor control mechanisms , 1986, Behavioral and Brain Sciences.

[58]  Edward R. Gruberg,et al.  Ablation of nucleus isthmi leads to loss of specific visually elicited behaviors in the frog Rana pipiens , 1985, Neuroscience Letters.

[59]  C. Judson Herrick,et al.  The amphibian forebrain. VIII. Cerebral hemispheres and pallial primordia , 1933 .

[60]  D. Bliss The Biology of Crustacea , 1982 .

[61]  A. Butler Brain Mechanisms of Behavior in Lower Vertebrates edited by P. R. Laming, Cambridge University Press, 1981.£25 (hard cover) £11 (paperback) (x + 318 pages) ISBN 0 521 28168 7 , 1982, Trends in Neurosciences.

[62]  R. C. Eaton,et al.  Command and the neural causation of behavior: a theoretical analysis of the necessity and sufficiency paradigm. , 1985, Brain, behavior and evolution.

[63]  G. Lázár Efferent pathways of the optic tectum in the frog. , 1969, Acta biologica Academiae Scientiarum Hungaricae.

[64]  R. Hinde Changes in responsiveness to a constant stimulus , 1954 .

[65]  G. Székely Functional specificity of spinal cord segments in the control of limb movements. , 1963, Journal of embryology and experimental morphology.

[66]  C. Gallistel The Organization of Action: A New Synthesis , 1982 .

[67]  D. Dennett The Intentional Stance. , 1987 .

[68]  P. Grobstein,et al.  Neuronal organization underlying visually elicited prey orienting in the frog—III. Evidence for the existence of an uncrossed descending tectofugal pathway , 1987, Neuroscience.

[69]  D. Hubel,et al.  Receptive fields, binocular interaction and functional architecture in the cat's visual cortex , 1962, The Journal of physiology.

[70]  W. Pitts,et al.  What the Frog's Eye Tells the Frog's Brain , 1959, Proceedings of the IRE.

[71]  Allen I. Selverston,et al.  Model Neural Networks and Behavior , 1985, Springer US.

[72]  T. Reuter,et al.  Chromatic properties of the retinal afferents in the thalamus and the tectum of the frog (Rana temporaria) , 1985, Vision Research.

[73]  J. Ewert,et al.  Correlation between behavioral and neuronal activities of toads Bufo bufo (L.) in response to moving configurational prey stimuli , 1979, Behavioural Processes.

[74]  George Adrian Horridge,et al.  Neuron function and behaviour: Which explains which? , 1983 .

[75]  G. Lázár,et al.  Morphology of the cells of origin of descending pathways to the spinal cord in Rana esculenta. A tracing study using cobaltic-lysine complex. , 1985, Journal fur Hirnforschung.

[76]  Irenäus Eibl-Eibesfeldt Nahrungserwerb Und Beuteschema Der Erdkröte (Bufo Bufo L.) , 1951 .

[77]  D. F. Russell,et al.  Bursting neural networks: a reexamination. , 1978, Science.

[78]  E. Kandel,et al.  Associative learning in Aplysia: cellular correlates supporting a conditioned fear hypothesis. , 1981, Science.

[79]  G. Horn Memory, imprinting, and the brain : an inquiry into mechanisms , 1985 .

[80]  J. Fodor,et al.  The Language of Thought , 1980 .

[81]  William P. Alston,et al.  Knowledge and the Flow of Information , 1985 .

[82]  V. Mountcastle Modality and topographic properties of single neurons of cat's somatic sensory cortex. , 1957, Journal of neurophysiology.

[83]  A. Parent Distribution of monoamine‐containing neurons in the brain stem of the frog, Rana temporaria , 1973, Journal of morphology.

[84]  G. Székely,et al.  Activity of spinal cord fragments and limbs deplanted in the dorsal fin of urodele larvae. , 1971, Acta physiologica Academiae Scientiarum Hungaricae.

[85]  J. Massion,et al.  Neural coding of motor performance , 1983 .

[86]  J. T. Hackett,et al.  The behavioral role of the Mauthner neuron impulse , 1986, Behavioral and Brain Sciences.

[87]  W von Seelen,et al.  [Neurobiology and system theory of a visual pattern recognition mechanism in the toad]. , 1973, Kybernetik.

[88]  D. Ingle,et al.  Disinhibition of Tectal Neurons by Pretectal Lesions in the Frog , 1973, Science.

[89]  Hans Schneider,et al.  Modification of prey-catching behavior by learning in the common toad (Bufo b. bufo [L], Anura, Amphibia): Changes in responses to visual objects and effects of auditory stimuli , 1978, Behavioural Processes.

[90]  J. Disterhoft,et al.  Differentiated short latency response increases after conditioning in inferior colliculus neurons of alert rat , 1977, Brain Research.

[91]  K. Brändle,et al.  The control of alternating coordination of limb pairs in the newt (Triturus vulgaris). , 1973, Brain, behavior and evolution.

[92]  A. Routtenberg,et al.  Neural Mechanisms in Behavior , 1980, Springer New York.

[93]  C. H. WADDINGTON,et al.  Towards a Theoretical Biology , 1968, Nature.

[94]  J. Ewert,et al.  Invariants in configurational prey selection by Bufo bufo (L.). , 1979, Brain, behavior and evolution.

[95]  S. Ebbesson Evolution and ontogeny of neural circuits , 1984, Behavioral and Brain Sciences.

[96]  Toshiya Matsushima,et al.  Neuronal Pathways from the Tectal "Snapping-Evoking Area" to the Tongue-Muscle-Controlling Motoneurons in the Japanese Toad : Evidence of the Intervention of Excitatory Interneurons(COMMUNICATION)(Physiology) , 1984 .

[97]  B. Stein,et al.  Visual, auditory, and somatosensory convergence on cells in superior colliculus results in multisensory integration. , 1986, Journal of neurophysiology.

[98]  D. Ingle Some effects of pretectum lesions on the frogs' detection of stationary objects , 1980, Behavioural Brain Research.

[99]  Franz Huber,et al.  Cricket auditory communication , 1985 .

[100]  D L Sparks,et al.  Translation of sensory signals into commands for control of saccadic eye movements: role of primate superior colliculus. , 1986, Physiological reviews.

[101]  Irving Kupfermann,et al.  Neuronal Correlates of Habituation and Dishabituation of the Gill-Withdrawal Reflex in Aplysia , 1970, Science.

[102]  J. Ewert,et al.  Question of “head preference” in response to worm-like dummies during prey-capture of toads, Bufo bufo , 1982, Behavioural Processes.

[103]  Terry E. Robinson,et al.  Behavioral approaches to brain research , 1983 .

[104]  J. Gibson The perception of the visual world , 1951 .

[105]  E. Kandel Small systems of neurons. , 1979, Scientific American.

[106]  R. F. Thompson,et al.  Habituation: a model phenomenon for the study of neuronal substrates of behavior. , 1966, Psychological review.

[107]  A. Fuchs,et al.  Brainstem control of saccadic eye movements. , 1985, Annual review of neuroscience.

[108]  W. Pitts,et al.  Anatomy and Physiology of Vision in the Frog (Rana pipiens) , 1960, The Journal of general physiology.

[109]  G. Lázár,et al.  Morphology and location of tectal projection neurons in frogs: A study with hrp and cobalt‐filling , 1983, The Journal of comparative neurology.

[110]  G. Baerends,et al.  The External Morphology of the Egg and Its Variability , 1982 .

[111]  Steven P. Miller,et al.  Brain Stem Control of Spinal Mechanisms , 1982 .

[112]  H. Karten,et al.  Laminar organization of peptide‐like immunoreactivity in the anuran optictectum , 1982, The Journal of comparative neurology.

[113]  R Wehner,et al.  [Coordination system of the visual field in arthropods]. , 1973, Fortschritte der Zoologie.

[114]  K. R. Weiss,et al.  The command neuron concept , 1978, Behavioral and Brain Sciences.

[115]  R. C. Eaton,et al.  Seven principles for command and the neural causation of behavior. , 1988, Brain, behavior and evolution.

[116]  Paul Grobstein,et al.  Visual orienting deficits in frogs with various unilateral lesions , 1982, Behavioural Brain Research.

[117]  R. Northcutt,et al.  Nuclear organization of the bullfrog diencephalon , 1983, The Journal of comparative neurology.

[118]  Thomas A. Sebeok,et al.  How Animals Communicate , 1979 .

[119]  W. O. Friesen,et al.  From Stimulation to Undulation: A Neuronal Pathway for the Control of Swimming in the Leech , 1986, Science.

[120]  Walle J. H. Nauta,et al.  Contemporary Research Methods in Neuroanatomy , 1970, Springer Berlin Heidelberg.

[121]  E. Holst Die relative Koordination , 1939 .

[122]  G. Schneider Two visual systems. , 1969, Science.

[123]  D. Ingle Visual Releasers of Prey-Catching Behavior in Frogs and Toads , 1968 .

[124]  D. Ingle Prey-catching behavior of anurans toward moving and stationary objects. , 1971, Vision research.

[125]  J. Fodor Methodological solipsism considered as a research strategy in cognitive psychology , 1980, Behavioral and Brain Sciences.

[126]  R. Northcutt,et al.  Connections of the bullfrog striatum: Afferent organization , 1983, The Journal of comparative neurology.

[127]  Werner Von Seelen,et al.  On Information Processing in the Visual System of Vertebrates. I. , 1970 .

[128]  D. Ingle,et al.  Thalamo-tectal projections in the frog. , 1974, Brain research.

[129]  C. Thinus-Blanc,et al.  Cognitive Processes and Spatial Orientation in Animal and Man , 1987 .

[130]  C. Wiersma,et al.  INTERNEURONS COMMANDING SWIMMERET MOVEMENTS IN THE CRAYFISH, PROCAMBARUS CLARKI (GIRARD). , 1964, Comparative biochemistry and physiology.

[131]  G. Hoyle,et al.  Identified Neurons and Behavior of Arthropods , 1977, Springer US.

[132]  J. Ewert,et al.  The effects of pretectal lesions on neuronal, sustained potential shift and electroencephalographic responses of the toad tectum to presentation of a visual stimulus , 1983 .

[133]  W. Davis,et al.  Neural correlate of behavioral plasticity in command neurons of Pleurobranchaea. , 1978, Science.

[134]  P. Grobstein The Brain Machine: The Development of Neurophysiological Thought , 1986 .

[135]  I. Eibl-Eibesfeldt Ethology, the biology of behavior , 1970 .

[136]  Judea Pearl,et al.  Structuring causal trees , 1986, J. Complex..

[137]  T. Collett Stereopsis in toads , 1977, Nature.

[138]  R. Northcutt,et al.  Connections of the bullfrog striatum: Efferent projections , 1983, The Journal of comparative neurology.

[139]  J. Ewert The neural basis of visually guided behavior. , 1974, Scientific American.

[140]  J C Fentress,et al.  Contextual control of trigeminal sensorimotor function , 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience.

[141]  J. Ewert,et al.  Configurational prey selection by Bufo, Alytes, Bombina and Hyla. , 1979, Brain, behavior and evolution.

[142]  E. Stellar,et al.  The physiology of motivation. , 1954, Psychological review.

[143]  Harvey J. Karten,et al.  Evolution of the amniote basal ganglia , 1984, Trends in Neurosciences.

[144]  R. Descartes,et al.  The Philosophical Works of Descartes , 1967 .

[145]  S. Amari,et al.  Competition and Cooperation in Neural Nets , 1982 .

[146]  W M Schleidt,et al.  How "fixed" is the fixed action pattern? , 2010, Zeitschrift fur Tierpsychologie.

[147]  H. Karten,et al.  Enkephalin‐mediated basal ganglia influences over the optic tectum: Immunohistochemistry of the tectum and the lateral spiriform nucleus in pigeon , 1982, The Journal of comparative neurology.

[148]  D. Ingle,et al.  Effects of stimulus configuration on elicited prey catching by the marine toad (Bufo marinus) , 1978, Animal Behaviour.

[149]  J. Gibson What is a form? , 1951, Psychological review.

[150]  R. Llinás,et al.  Oscillatory properties of guinea‐pig inferior olivary neurones and their pharmacological modulation: an in vitro study. , 1986, The Journal of physiology.

[151]  E. John,et al.  The neurophysiology of information processing and cognition. , 1978, Annual review of psychology.

[152]  G. Benedek,et al.  RECENT DEVELOPMENTS OF NEUROBIOLOGY IN HUNGARY , 1976 .

[153]  Koch Sigmund Ed,et al.  Psychology: A Study of A Science , 1962 .

[154]  N. Foreman,et al.  Relationships between the superior colliculus and hippocampus: Neural and behavioral considerations , 1987, Behavioral and Brain Sciences.

[155]  H. Barlow The Twelfth Bartlett Memorial Lecture: The Role of Single Neurons in the Psychology of Perception , 1985, The Quarterly journal of experimental psychology. A, Human experimental psychology.

[156]  D. Schneider,et al.  Beitrag zu einer Analyse des Beute- und Fluchtverhaltens einheimischer Anuren , 1954 .

[157]  R. M. Gaze The representation of the retina on the optic lobe of the frog. , 1958, Quarterly journal of experimental physiology and cognate medical sciences.

[158]  Timothy ed. Teyler Brain and learning , 1978 .

[159]  Jeffrey M. Camhi,et al.  Neuroethology: Nerve Cells and the Natural Behavior of Animals , 1984 .

[160]  D. Ingle Detection of stationary objects by frogs (Rana pipiens) after ablation of optic tectum. , 1977, Journal of comparative and physiological psychology.

[161]  L. Brower,et al.  Experimental Studies of Mimicry. 5. The Reactions of Toads (Bufo terrestris) to Bumblebees (Bombus americanorum) and Their Robberfly Mimics (Mallophora bomboides), with a Discussion of Aggressive Mimicry , 1960, The American Naturalist.

[162]  Sven O. E. Ebbesson,et al.  Comparative Neurology of the Telencephalon , 2011, Springer US.

[163]  D. Ingle,et al.  Two Visual Systems in the Frog , 1973, Science.

[164]  J. Lettvin,et al.  Multiple meaning in single visual units. , 1970, Brain, behavior and evolution.

[165]  J. Ewert,et al.  Quantitative Analyse Der Reiz-Reaktionsbeziehungen Bei Visuellem Auslösen Des Fluchtverhaltens Der Wechselkröte (Bufo Viridis Laur.) , 1969 .

[166]  H. Whiting,et al.  Motor development in children : aspects of coordination and control , 1986 .

[167]  J T McIlwain,et al.  Visual receptive fields and their images in superior colliculus of the cat. , 1975, Journal of neurophysiology.

[168]  H. Barlow Summation and inhibition in the frog's retina , 1953, The Journal of physiology.

[169]  M. Kovac,et al.  Command neurons in Pleurobranchaea receive synaptic feedback from the motor network they excite. , 1978, Science.

[170]  R. Murphey The myth of the inflexible invertebrate: competition and synaptic remodelling in the development of invertebrate nervous systems. , 1986, Journal of neurobiology.

[171]  Gerald M. Edelman,et al.  Dynamic aspects of neocortical function , 1984 .

[172]  S. Ebbesson,et al.  An ultrastructural study of the normal synaptic organization of the optic tectum and the degenerating tectal afferents from retina, telencephalon, and contralateral tectum in a teleost, holocentrus rufus , 1980, The Journal of comparative neurology.

[173]  R. Neuman,et al.  Selective accumulation of hydroxytryptamines by frog tectal neurones , 1984, Neuroscience.

[174]  R. Mansfield,et al.  Analysis of visual behavior , 1982 .

[175]  M. Gladden,et al.  Feedback and Motor Control in Invertebrates and Vertebrates , 1985, Springer Netherlands.

[176]  J. Ewert,et al.  Ontogenetic aspects on visual "size-constancy" phenomena in the midwife toad Alytes obstetricans (Laur.). , 1979, Brain, behavior and evolution.

[177]  H. Vanegas,et al.  Comparative neurology of the optic tectum , 1984 .

[178]  A. Graybiel A satellite system of the superior colliculus: the parabigeminal nucleus and its projections to the superficial collicular layers , 1978, Brain Research.

[179]  K. Kirschfeld [Neural superposition eye]. , 1973, Fortschritte der Zoologie.

[180]  J. Ewert,et al.  Modulation of tectal functions by prosencephalic loops in amphibians , 1987, Behavioral and Brain Sciences.

[181]  P. Grobstein,et al.  Neuronal organization underlying visually elicited prey orienting in the frog—II. Anatomical studies on the laterality of central projections , 1987, Neuroscience.

[182]  R. Northcutt,et al.  Afferents to the optic tectum of the leopard frog: An HRP study , 1977, The Journal of comparative neurology.

[183]  D. Ingle Focal attention in the frog: behavioral and physiological correlates. , 1975, Science.

[184]  Allen I. Selverston,et al.  Are central pattern generators understandable? , 1980, Behavioral and Brain Sciences.

[185]  A. Grinnell,et al.  Introduction to Nervous Systems , 1978 .

[186]  H. Barlow The Role of Nature, Nurture, and Intelligence in Pattern Recognition , 1985 .

[187]  M. Frey Physiologie der Sinnesorgane der menschlichen Haut , 1910 .

[188]  Jack Sklansky,et al.  Pattern Classifiers and Trainable Machines , 1981 .

[189]  R. R. Sturrock,et al.  Neural Origin of Rhythmic Movements , 1984 .

[190]  R. F. Thompson,et al.  Cerebellum: essential involvement in the classically conditioned eyelid response. , 1984, Science.

[191]  J. Ewert Behavioral selectivity based on thalamotectal interactions: Ontogenetic and phylogenetic aspects in amphibians , 1984, Behavioral and Brain Sciences.

[192]  G. Baerends DO THE DUMMY EXPERIMENTS WITH STICKLEBACKS SUPPORT THE IRM-CONCEPT , 1985 .

[193]  A. Manning,et al.  An introduction to animal behaviour , 1967 .

[194]  Arnold J. Mandell,et al.  Synergetics of the Brain , 1983 .

[195]  L. Zusne Visual perception of form , 1970 .