Plasticity — Memory — Attention
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T. Wiesel | R. Desimone | E. Miller | C. Gilbert | J. Kaas | Trichur Raman Vidyasagar | C. Colby | C. Olson | L. Chelazzi | J. Duncan | F. Ohl | H. Scheich | J. Duhamel | J. Tillein | S. Y. Musil | S. Florence | M. E. Goldberg | H. Thomas | C. Simonis | E. Miller
[1] Gerald Westheimer,et al. Interference with stereoscopic acuity: Spatial, temporal, and disparity tuning , 1978, Vision Research.
[2] M. Goldberg,et al. Ventral intraparietal area of the macaque: anatomic location and visual response properties. , 1993, Journal of neurophysiology.
[3] E. Miller,et al. Habituation-like decrease in the responses of neurons in inferior temporal cortex of the macaque , 1991, Visual Neuroscience.
[4] K. Tanaka,et al. Analysis of local and wide-field movements in the superior temporal visual areas of the macaque monkey , 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[5] P. Goldman-Rakic,et al. Dissociation of object and spatial processing domains in primate prefrontal cortex. , 1993, Science.
[6] G. Recanzone,et al. Topographic reorganization of the hand representation in cortical area 3b owl monkeys trained in a frequency-discrimination task. , 1992, Journal of neurophysiology.
[7] V. Ramachandran,et al. Perceptual correlates of massive cortical reorganization. , 1992, Science.
[8] N. Weinberger,et al. Long-term retention of learning-induced receptive-field plasticity in the auditory cortex. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[9] Trichur R. Vidyasagar,et al. Functional comparison of neuronal properties in the primate posterior hippocampus and parahippocampus (area TF/TH) during different behavioural paradigms involving memory and selective attention , 1993, Behavioural Brain Research.
[10] G. Westheimer. Spatial interaction in the domain of disparity signals in human stereoscopic vision. , 1986, The Journal of physiology.
[11] R. Andersen,et al. Saccade-related activity in the lateral intraparietal area. II. Spatial properties. , 1991, Journal of neurophysiology.
[12] V. Mountcastle,et al. Posterior parietal association cortex of the monkey: command functions for operations within extrapersonal space. , 1975, Journal of neurophysiology.
[13] D. Diamond,et al. Physiological plasticity in auditory cortex: Rapid induction by learning , 1987, Progress in Neurobiology.
[14] M. Calford,et al. Immediate expansion of receptive fields of neurons in area 3b of macaque monkeys after digit denervation. , 1991, Somatosensory & motor research.
[15] J. W. Papez. A PROPOSED MECHANISM OF EMOTION , 1937 .
[16] T. Wiesel,et al. The influence of contextual stimuli on the orientation selectivity of cells in primary visual cortex of the cat , 1990, Vision Research.
[17] D. J. Felleman,et al. Progression of change following median nerve section in the cortical representation of the hand in areas 3b and 1 in adult owl and squirrel monkeys , 1983, Neuroscience.
[18] Gordon M. Shepherd,et al. High-resolution 2-deoxyglucose autoradiography in quick-frozen slabs of neonatal rat olfactory bulb , 1985, Brain Research.
[19] G. Kanizsa,et al. Organization in Vision: Essays on Gestalt Perception , 1979 .
[20] J. Kaas,et al. Large-scale functional reorganization in adult monkey cortex after peripheral nerve injury. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[21] P. Goldman-Rakic,et al. Posterior parietal cortex in rhesus monkey: II. Evidence for segregated corticocortical networks linking sensory and limbic areas with the frontal lobe , 1989, The Journal of comparative neurology.
[22] J. Kaas,et al. Neuroplasticity of the adult primate auditory cortex following cochlear hearing loss. , 1993, The American journal of otology.
[23] H. Scheich,et al. Effects of unilateral and bilateral cochlea removal on 2‐deoxyglucose patterns in the chick auditory system , 1986, The Journal of comparative neurology.
[24] L. Kruger,et al. Absence of intraspinal sprouting in dorsal root axons caudal to a partial spinal hemisection: a horseradish peroxidase transport study. , 1984, Somatosensory research.
[25] W. Newsome,et al. Deficits in visual motion processing following ibotenic acid lesions of the middle temporal visual area of the macaque monkey , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[26] D. Robinson,et al. Behavioral enhancement of visual responses in monkey cerebral cortex. I. Modulation in posterior parietal cortex related to selective visual attention. , 1981, Journal of neurophysiology.
[27] P Cavanagh,et al. Familiarity and pop-out in visual search , 1994, Perception & psychophysics.
[28] H. Wigström,et al. Physiological mechanisms underlying long-term potentiation , 1988, Trends in Neurosciences.
[29] D J Felleman,et al. Recovery of normal topography in the somatosensory cortex of monkeys after nerve crush and regeneration. , 1983, Science.
[30] E. W. Kairiss,et al. Hebbian synapses: biophysical mechanisms and algorithms. , 1990, Annual review of neuroscience.
[31] Henning Scheich,et al. Auditory cortex: comparative aspects of maps and plasticity , 1991, Current Opinion in Neurobiology.
[32] J. Kaas,et al. Rapid reorganization of cortical maps in adult cats following restricted deafferentation in retina , 1992, Vision Research.
[33] Gerald Westhhmer,et al. Simultaneous orientation contrast for lines in the human fovea , 1990, Vision Research.
[34] L. Kruger,et al. Nonoverlapping thalamocortical connections to normal and deprived primary somatosensory cortex for similar forelimb receptive fields in chronic spinal cats. , 1988, Somatosensory research.
[35] S P McKee,et al. Interference with line-orientation sensitivity. , 1976, Journal of the Optical Society of America.
[36] P. Snow,et al. Reorganization of the receptive fields of spinocervical tract neurons following denervation of a single digit in the cat. , 1987, Journal of neurophysiology.
[37] E. Taub,et al. Chronic deafferentation in monkeys differentially affects nociceptive and nonnociceptive pathways distinguished by specific calcium-binding proteins and down-regulates gamma-aminobutyric acid type A receptors at thalamic levels. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[38] J. Kaas,et al. Injury-induced reorganization of somatosensory cortex is accompanied by reductions in GABA staining. , 1991, Somatosensory & motor research.
[39] M. Reivich,et al. THE [14C]DEOXYGLUCOSE METHOD FOR THE MEASUREMENT OF LOCAL CEREBRAL GLUCOSE UTILIZATION: THEORY, PROCEDURE, AND NORMAL VALUES IN THE CONSCIOUS AND ANESTHETIZED ALBINO RAT 1 , 1977, Journal of neurochemistry.
[40] M. Mesulam. A cortical network for directed attention and unilateral neglect , 1981, Annals of neurology.
[41] J. Lund,et al. Intrinsic laminar lattice connections in primate visual cortex , 1983, The Journal of comparative neurology.
[42] Henning Scheich,et al. Neural substrates for tone-conditioned bradycardia demonstrated with 2-deoxyglucose. I. Activation of auditory nuclei , 1984, Behavioural Brain Research.
[43] C. Bundesen. A theory of visual attention. , 1990, Psychological review.
[44] A. Treisman. Features and Objects: The Fourteenth Bartlett Memorial Lecture , 1988, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[45] J. Kaas. Plasticity of sensory and motor maps in adult mammals. , 1991, Annual review of neuroscience.
[46] Y. Miyashita,et al. Neuronal correlate of pictorial short-term memory in the primate temporal cortexYasushi Miyashita , 1988, Nature.
[47] K. E. Binns,et al. The Maturation of the Superior Collicular Map of Auditory Space in the Guinea Pig is Disrupted by Developmental Visual Deprivation , 1990, The European journal of neuroscience.
[48] T. Wiesel,et al. Relationships between horizontal interactions and functional architecture in cat striate cortex as revealed by cross-correlation analysis , 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[49] R. Desimone,et al. Activity of neurons in anterior inferior temporal cortex during a short- term memory task , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[50] D. Robinson,et al. Parietal association cortex in the primate: sensory mechanisms and behavioral modulations. , 1978, Journal of neurophysiology.
[51] R. Wurtz. Visual receptive fields of striate cortex neurons in awake monkeys. , 1969, Journal of neurophysiology.
[52] C. Gilbert,et al. The projections of cells in different layers of the cat's visual cortex , 1975, The Journal of comparative neurology.
[53] L. Squire. Memory and Brain , 1987 .
[54] David J. Field,et al. Contour integration by the human visual system: Evidence for a local “association field” , 1993, Vision Research.
[55] R. L. Gregory,et al. Perceptual filling in of artificially induced scotomas in human vision , 1991, Nature.
[56] E. W. Kairiss,et al. Long-term synaptic potentiation. , 1988, Science.
[57] U. Eysel,et al. Functional reconnections without new axonal growth in a partially denervated visual relay nucleus , 1982, Nature.
[58] J. Kaas,et al. Central projections from the skin of the hand in squirrel monkeys , 1991, The Journal of comparative neurology.
[59] D. Whitteridge,et al. Form, function and intracortical projections of spiny neurones in the striate visual cortex of the cat. , 1984, The Journal of physiology.
[60] H. Killackey,et al. Expansion of the Central Hindpaw Representation Following Fetal Forelimb Removal in the Rat , 1989, The European journal of neuroscience.
[61] Louis Sokoloff,et al. Activity‐dependent Energy Metabolism in Rat Posterior Pituitary Primarily Reflects Sodium Pump Activity , 1980, Journal of neurochemistry.
[62] H. Scheich,et al. Classical conditioning of tone-signaled bradycardia modifies 2-deoxyglucose uptake patterns in cortex, thalamus, habenula, caudate-putamen and hippocampal formation , 1986, Brain Research.
[63] U. Eysel,et al. Time-dependent decrease in the extent of visual deafferentation in the lateral geniculate nucleus of adult cats with small retinal lesions , 2004, Experimental Brain Research.
[64] T. Sato,et al. Effects of attention and stimulus interaction on visual responses of inferior temporal neurons in macaque. , 1988, Journal of neurophysiology.
[65] J. Duncan,et al. Visual search and stimulus similarity. , 1989, Psychological review.
[66] R. Dykes,et al. Functional role of GABA in cat primary somatosensory cortex: shaping receptive fields of cortical neurons. , 1984, Journal of neurophysiology.
[67] R. Andersen,et al. Memory related motor planning activity in posterior parietal cortex of macaque , 1988, Experimental Brain Research.
[68] Henning Scheich,et al. Functional Organization of Auditory Cortex in the Mongolian Gerbil (Meriones unguiculatus). I. Electrophysiological Mapping of Frequency Representation and Distinction of Fields , 1993, The European journal of neuroscience.
[69] J. S. McCasland,et al. High‐resolution 2‐deoxyglucose mapping of functional cortical columns in mouse barrel cortex , 1988, The Journal of comparative neurology.
[70] R. von der Heydt,et al. Mechanisms of contour perception in monkey visual cortex. I. Lines of pattern discontinuity , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[71] E. Buchner,et al. Functional neuroanatomical mapping in insects by [3H]2-deoxy-D-glucose at electron microscopical resolution , 1982, Neuroscience Letters.
[72] E. Rolls,et al. Responses of neurons in the inferior temporal cortex in short term and serial recognition memory tasks , 2004, Experimental Brain Research.
[73] J. Krauskopf. Heterochromatic stabilized images: a classroom demonstration. , 1967, The American journal of psychology.
[74] D. Hubel,et al. Receptive fields, binocular interaction and functional architecture in the cat's visual cortex , 1962, The Journal of physiology.
[75] C. Gross,et al. Topographical organization of cortical afferents to extrastriate visual area PO in the macaque: A dual tracer study , 1988, The Journal of comparative neurology.
[76] J. Lund,et al. Widespread periodic intrinsic connections in the tree shrew visual cortex. , 1982, Science.
[77] C. Gilbert. Microcircuitry of the visual cortex. , 1983, Annual review of neuroscience.
[78] V. Mountcastle. Modality and topographic properties of single neurons of cat's somatic sensory cortex. , 1957, Journal of neurophysiology.
[79] T. Wiesel,et al. Morphology and intracortical projections of functionally characterised neurones in the cat visual cortex , 1979, Nature.
[80] J R Duhamel,et al. The updating of the representation of visual space in parietal cortex by intended eye movements. , 1992, Science.
[81] Trichur Raman Vidyasagar,et al. Possible plasticity in the rat superior colliculus , 1978, Nature.
[82] J. Fuster,et al. Inferotemporal neurons distinguish and retain behaviorally relevant features of visual stimuli. , 1981, Science.
[83] R. M. Siegel,et al. Corticocortical connections of anatomically and physiologically defined subdivisions within the inferior parietal lobule , 1990, The Journal of comparative neurology.
[84] J Allman,et al. Direction- and Velocity-Specific Responses from beyond the Classical Receptive Field in the Middle Temporal Visual Area (MT) , 1985, Perception.
[85] B. Ryals,et al. Development of the place principle: acoustic trauma. , 1983, Science.
[86] T. Wiesel,et al. Clustered intrinsic connections in cat visual cortex , 1983, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[87] John Duncan,et al. A neural basis for visual search in inferior temporal cortex , 1993, Nature.
[88] J. Gibson,et al. Adaptation, after-effect and contrast in the perception of tilted lines. I. Quantitative studies , 1937 .
[89] O. D. Creutzfeldt,et al. Unit activity in the hippocampus and the parahippocampal temporobasal association cortex related to memory and complex behaviour in the awake monkey , 1991, Brain Research.
[90] Ken Nakayama,et al. Brightness perception and filling-in , 1991, Vision Research.
[91] G. Recanzone,et al. Expansion of the cortical representation of a specific skin field in primary somatosensory cortex by intracortical microstimulation. , 1992, Cerebral cortex.
[92] G. Westheimer,et al. Spatial location and hyperacuity: The centre/surround localization contribution function has two substrates , 1985, Vision Research.
[93] E. Welker,et al. Plasticity in the barrel cortex of the adult mouse: effects of chronic stimulation upon deoxyglucose uptake in the behaving animal , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[94] C L Colby,et al. The analysis of visual space by the lateral intraparietal area of the monkey: the role of extraretinal signals. , 1993, Progress in brain research.
[95] Earl K. Miller,et al. Dual mechanisms of short-term memory Ventral prefrontal cortex , 1993 .
[96] R. Desimone,et al. A neural mechanism for working and recognition memory in inferior temporal cortex. , 1991, Science.
[97] T. Wiesel,et al. Receptive field dynamics in adult primary visual cortex , 1992, Nature.
[98] M. Pettet,et al. Dynamic changes in receptive-field size in cat primary visual cortex. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[99] R. Wurtz,et al. Activity of superior colliculus in behaving monkey. II. Effect of attention on neuronal responses. , 1972, Journal of neurophysiology.
[100] J. Kaas,et al. Reorganization of retinotopic cortical maps in adult mammals after lesions of the retina. , 1990, Science.
[101] J. Metzler,et al. Functional changes in cat somatic sensory-motor cortex during short-term reversible epidural blocks , 1979, Brain Research.
[102] J. S. McCasland,et al. New high‐resolution 2‐deoxyglucose method featuring double labeling and automated data collection , 1988, The Journal of comparative neurology.
[103] R. Desimone,et al. Parallel neuronal mechanisms for short-term memory. , 1994, Science.
[104] R. Andersen,et al. Callosal and prefrontal associational projecting cell populations in area 7A of the macaque monkey: A study using retrogradely transported fluorescent dyes , 1985, The Journal of comparative neurology.
[105] P. E. Hallett,et al. Saccadic eye movements to flashed targets , 1976, Vision Research.
[106] J. Lynch,et al. Deficits of visual attention and saccadic eye movements after lesions of parietooccipital cortex in monkeys. , 1989, Journal of neurophysiology.
[107] J. P. Rauschecker,et al. Auditory compensation of the effects of visual deprivation in the cat's superior colliculus , 2004, Experimental Brain Research.
[108] Gerald Langner,et al. Functional Organization of Auditory Cortex in the Mongolian Gerbil (Meriones unguiculatus) II. Tonotopic 2‐Deoxyglucose , 1993, The European journal of neuroscience.
[109] G. Rizzolatti,et al. Neurons related to goal-directed motor acts in inferior area 6 of the macaque monkey , 2004, Experimental Brain Research.
[110] G. Orban,et al. The suppressive influence of moving textured backgrounds on responses of cat striate neurons to moving bars. , 1987, Journal of neurophysiology.
[111] J. Kaas,et al. Ablations of areas 3b (SI proper) and 3a of somatosensory cortex in marmosets deactivate the second and parietal ventral somatosensory areas. , 1990, Somatosensory & motor research.
[112] J. Fuster,et al. Functional interactions between inferotemporal and prefrontal cortex in a cognitive task , 1985, Brain Research.
[113] David P. Friedman,et al. Physiological evidence for serial processing in somatosensory cortex. , 1987, Science.
[114] B. Fischer,et al. Peripheral attention versus central fixation: Modulation of the visual activity of prelunate cortical cells of the rhesus monkey , 1985, Brain Research.
[115] M. Cynader,et al. Somatosensory cortical map changes following digit amputation in adult monkeys , 1984, The Journal of comparative neurology.
[116] J. Rauschecker,et al. Imprinting and cortical plasticity , 1987 .
[117] R. Andersen,et al. The influence of the angle of gaze upon the excitability of the light- sensitive neurons of the posterior parietal cortex , 1983, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[118] A. Mikami,et al. Inferotemporal neuron activities and color discrimination with delay , 1980, Brain Research.
[119] D. B. Bender,et al. Activity of inferior temporal neurons in behaving monkeys , 1979, Neuropsychologia.
[120] C. Gilbert. Laminar differences in receptive field properties of cells in cat primary visual cortex , 1977, The Journal of physiology.
[121] J. Fuster. Inferotemporal units in selective visual attention and short-term memory. , 1990, Journal of neurophysiology.
[122] V. Mountcastle,et al. Parietal lobe mechanisms for directed visual attention. , 1977, Journal of neurophysiology.
[123] Henning Scheich,et al. Neural substrates for tone-conditioned bradycardia demonstrated with 2-deoxyglucose. II. Auditory cortex plasticity , 1986, Behavioural Brain Research.
[124] T. Wiesel,et al. Columnar specificity of intrinsic horizontal and corticocortical connections in cat visual cortex , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[125] M. Nicolelis,et al. Induction of immediate spatiotemporal changes in thalamic networks by peripheral block of ascending cutaneous information , 1993, Nature.
[126] S. Grossberg,et al. Pattern Recognition by Self-Organizing Neural Networks , 1991 .
[127] C. Gilbert,et al. Long‐term changes in synaptic strength along specific intrinsic pathways in the cat visual cortex. , 1993, The Journal of physiology.
[128] D. Diamond,et al. Role of context in the expression of learning-induced plasticity of single neurons in auditory cortex. , 1989, Behavioral neuroscience.
[129] C. Colby,et al. The Neuroanatomy and Neurophysiology of Attention , 1991 .
[130] S. McKee,et al. Spatial configurations for visual hyperacuity , 1977, Vision Research.
[131] Michael E. Goldberg,et al. Posterior Cingulate Cortex and Visuospatial Cognition: Properties of Single Neurons in the Behaving Monkey , 1993 .
[132] L. Cooper,et al. A physiological basis for a theory of synapse modification. , 1987, Science.
[133] Ranjan Duara,et al. Frontal hypermetabolism and thalamic hypometabolism in a patient with abnormal orienting and retrosplenial amnesia , 1990, Neuropsychologia.
[134] M. Mishkin,et al. Lesion-induced plasticity in the second somatosensory cortex of adult macaques. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[135] G. V. Hoesen,et al. The parahippocampal gyrus: New observations regarding its cortical connections in the monkey , 1982, Trends in Neurosciences.
[136] J. Edeline,et al. Frequency-specific cellular changes in the auditory system during acquisition and reversal of discriminative conditioning , 1990, Psychobiology.
[137] H. Scheich,et al. Quantitative analysis and two-dimensional reconstruction of the tonotopic organization of the auditory field L in the chick from 2-deoxyglucose data , 2004, Experimental Brain Research.
[138] F. Ebner,et al. Experience-dependent plasticity in adult rat barrel cortex. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[139] D. Hubel,et al. Uniformity of monkey striate cortex: A parallel relationship between field size, scatter, and magnification factor , 1974, The Journal of comparative neurology.
[140] Donald Robertson,et al. Plasticity of frequency organization in auditory cortex of guinea pigs with partial unilateral deafness , 1989, The Journal of comparative neurology.
[141] I. Riches,et al. The effects of visual stimulation and memory on neurons of the hippocampal formation and the neighboring parahippocampal gyrus and inferior temporal cortex of the primate , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[142] M. Goldberg,et al. Representation of visuomotor space in the parietal lobe of the monkey. , 1990, Cold Spring Harbor symposia on quantitative biology.
[143] L. Optican,et al. Role of inferior temporal neurons in visual memory. I. Temporal encoding of information about visual images, recalled images, and behavioral context. , 1992, Journal of neurophysiology.
[144] A. King,et al. Plasticity of auditory maps in the brain , 1991, Trends in Neurosciences.
[145] 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.
[146] D C Van Essen,et al. Information processing in the primate visual system: an integrated systems perspective. , 1992, Science.
[147] M. Mishkin,et al. Massive cortical reorganization after sensory deafferentation in adult macaques. , 1991, Science.
[148] M. Critchley. The parietal lobes , 1966 .
[149] H. Scheich,et al. Representational Geometries of Telencephalic Auditory Maps in Birds and Mammals , 1991 .
[150] C. Gilbert,et al. Generation of end-inhibition in the visual cortex via interlaminar connections , 1986, Nature.
[151] M. D. Egger,et al. Formation of New Connexions in Adult Rat Brains after Partial Deafferentation , 1971, Nature.
[152] R. Wurtz,et al. Visual and oculomotor functions of monkey substantia nigra pars reticulata. III. Memory-contingent visual and saccade responses. , 1983, Journal of neurophysiology.
[153] R. Desimone,et al. The representation of stimulus familiarity in anterior inferior temporal cortex. , 1993, Journal of neurophysiology.
[154] James R. Bergen,et al. Parallel versus serial processing in rapid pattern discrimination , 1983, Nature.
[155] C. Bruce,et al. Primate frontal eye fields. I. Single neurons discharging before saccades. , 1985, Journal of neurophysiology.
[156] D. Ts'o,et al. The organization of chromatic and spatial interactions in the primate striate cortex , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[157] R Gattass,et al. Dynamic surrounds of receptive fields in primate striate cortex: a physiological basis for perceptual completion? , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[158] T. Wiesel,et al. Targets of horizontal connections in macaque primary visual cortex , 1991, The Journal of comparative neurology.
[159] C D Gilbert,et al. Circuitry, architecture, and functional dynamics of visual cortex. , 1993, Cerebral cortex.
[160] J. Kaas,et al. Sprouting of peripheral nerve axons in the spinal cord of monkeys , 1993, Brain Research.
[161] E. Kandel,et al. Is contiguity detection in classical conditioning a system or a cellular property? Learning in Aplysia suggests a possible molecular site , 1988, Trends in Neurosciences.
[162] D. J. Felleman,et al. Topographic reorganization of somatosensory cortical areas 3b and 1 in adult monkeys following restricted deafferentation , 1983, Neuroscience.
[163] D. Ganchrow,et al. Bouton renewal patterns in rat hindlimb cortex after thoracic dorsal funicular lesions , 1981, Journal of neuroscience research.
[164] Norman M. Weinberger,et al. Retuning auditory cortex by learning: A preliminary model , 1990 .
[165] Richard A. Andersen,et al. A back-propagation programmed network that simulates response properties of a subset of posterior parietal neurons , 1988, Nature.
[166] D J Felleman,et al. Functional reorganization in somatosensory cortical areas 3b and 1 of adult monkeys after median nerve repair: possible relationships to sensory recovery in humans , 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[167] HEWITT D. CRANE,et al. On Seeing Reddish Green and Yellowish Blue , 1983, Science.
[168] R. Desimone,et al. Selective attention gates visual processing in the extrastriate cortex. , 1985, Science.
[169] J. Kaas,et al. Functional reorganization in adult monkey thalamus after peripheral nerve injury , 1991, Neuroreport.
[170] R. Coggeshall,et al. Peripheral nerve injury triggers central sprouting of myelinated afferents , 1992, Nature.
[171] G Westheimer,et al. A quantitative measure for short-term cortical plasticity in human vision , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.