Neuronal circuits of the neocortex.
暂无分享,去创建一个
[1] I. H. Coriat,et al. Histological Studies on the Localization of Cerebral Function , 1906 .
[2] J. Bolton. “A CONTRIBUTION TO THE LOCALIZATION OF CEREBRAL FUNCTION, BASED ON THE CLINICO-PATHOLOGICAL STUDY OF MENTAL DISEASE” , 1910 .
[3] D. Hubel,et al. Receptive fields, binocular interaction and functional architecture in the cat's visual cortex , 1962, The Journal of physiology.
[4] B. Cragg. The density of synapses and neurones in the motor and visual areas of the cerebral cortex. , 1967, Journal of anatomy.
[5] T. Powell,et al. An experimental study of the termination of the lateral geniculo–cortical pathway in the cat and monkey , 1971, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[6] L. Garey. A light and electron microscopic study of the visual cortex of the cat and monkey , 1971, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[7] J. Szentágothai. Synaptology of the Visual Cortex , 1973 .
[8] E. G. Jones,et al. Varieties and distribution of non‐pyramidal cells in the somatic sensory cortex of the squirrel monkey , 1975, The Journal of comparative neurology.
[9] T. Powell,et al. The intrinsic, association and commissural connections of area 17 on the visual cortex. , 1975, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[10] C. Gilbert,et al. The projections of cells in different layers of the cat's visual cortex , 1975, The Journal of comparative neurology.
[11] S. Wise. The laminar organization of certain afferent and efferent fiber systems in the rat somatosensory cortex , 1975, Brain Research.
[12] J. Lund,et al. The origin of efferent pathways from the primary visual cortex, area 17, of the macaque monkey as shown by retrograde transport of horseradish peroxidase , 1975, The Journal of comparative neurology.
[13] S P Wise,et al. Size, laminar and columnar distribution of efferent cells in the sensory‐motor cortex of monkeys , 1977, The Journal of comparative neurology.
[14] J. Szentágothai. The Ferrier Lecture, 1977 The neuron network of the cerebral cortex: a functional interpretation , 1978, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[15] S. Zeki,et al. The cortical projections of foveal striate cortex in the rhesus monkey. , 1978, The Journal of physiology.
[16] S. Zeki. Functional specialisation in the visual cortex of the rhesus monkey , 1978, Nature.
[17] G. Henry,et al. Anatomical organization of the primary visual cortex (area 17) of the cat. A comparison with area 17 of the macaque monkey , 1979, The Journal of comparative neurology.
[18] K. Rockland,et al. Laminar origins and terminations of cortical connections of the occipital lobe in the rhesus monkey , 1979, Brain Research.
[19] T. Powell,et al. A study of the axon initial segment and proximal axon of neurons in the primate motor and somatic sensory cortices. , 1979, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[20] G. Henry,et al. Laminar distribution of first-order neurons and afferent terminals in cat striate cortex. , 1979, Journal of neurophysiology.
[21] Alan Peters,et al. A reassessment of the forms of nonpyramidal neurons in area 17 of cat visual cortex , 1981, The Journal of comparative neurology.
[22] A. Cowey,et al. Combined golgi and electron microscopic study on the synapses formed by double bouquet cells in the visual cortex of the cat and monkey , 1981, The Journal of comparative neurology.
[23] G. Mitchison,et al. Long axons within the striate cortex: their distribution, orientation, and patterns of connection. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[24] A. L. Humphrey,et al. Anatomical banding of intrinsic connections in striate cortex of tree shrews (Tupaia glis) , 1982, The Journal of comparative neurology.
[25] M. Colonnier,et al. A laminar analysis of the number of neurons, glia, and synapses in the visual cortex (area 17) of adult macaque monkeys , 1982, The Journal of comparative neurology.
[26] D. Hubel. Cortical neurobiology: a slanted historical perspective. , 1982, Annual review of neuroscience.
[27] T. P. S. Powell,et al. Laminar cell counts and geniculo-cortical boutons in area 17 of cat and monkey , 1983, Brain Research.
[28] J. Lund,et al. Intrinsic laminar lattice connections in primate visual cortex , 1983, The Journal of comparative neurology.
[29] C. Gilbert. Microcircuitry of the visual cortex. , 1983, Annual review of neuroscience.
[30] T. Wiesel,et al. Functional organization of the visual cortex. , 1983, Progress in brain research.
[31] P. Somogyi,et al. Synaptic connections of morphologically identified and physiologically characterized large basket cells in the striate cortex of cat , 1983, Neuroscience.
[32] H. Fibiger,et al. Substance P in the ascending cholinergic reticular system , 1983, Nature.
[33] A. Peters,et al. Vasoactive intestinal polypeptide-immunoreactive neurons in rat visual cortex , 1984, Neuroscience.
[34] John H. R. Maunsell,et al. The visual field representation in striate cortex of the macaque monkey: Asymmetries, anisotropies, and individual variability , 1984, Vision Research.
[35] P. Emson,et al. Morphology, distribution, and synaptic relations of somatostatin- and neuropeptide Y-immunoreactive neurons in rat and monkey neocortex , 1984, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[36] 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.
[37] F. Eckenstein,et al. Two types of cholinergic innervation in cortex, one co-localized with vasoactive intestinal polypeptide , 1984, Nature.
[38] P. Somogyi,et al. Different populations of GABAergic neurons in the visual cortex and hippocampus of cat contain somatostatin- or cholecystokinin- immunoreactive material , 1984, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[39] D. Fitzpatrick,et al. GABAergic neurons of mammalian cerebral cortex: Widespread subclass defined by somatostatin content , 1984, Neuroscience Letters.
[40] D. Hubel,et al. Specificity of intrinsic connections in primate primary visual cortex , 1984, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[41] J Bullier,et al. Branching and laminar origin of projections between visual cortical areas in the cat , 1984, The Journal of comparative neurology.
[42] G. Blasdel,et al. Intrinsic connections of macaque striate cortex: axonal projections of cells outside lamina 4C , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[43] G. Blasdel,et al. Intrinsic connections of macaque striate cortex: afferent and efferent connections of lamina 4C , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[44] D. Whitteridge,et al. Innervation of cat visual areas 17 and 18 by physiologically identified X‐ and Y‐ type thalamic afferents. II. Identification of postsynaptic targets by GABA immunocytochemistry and Golgi impregnation , 1985, The Journal of comparative neurology.
[45] H. Kennedy,et al. A double-labeling investigation of the afferent connectivity to cortical areas V1 and V2 of the macaque monkey , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[46] H. Barbas. Pattern in the laminar origin of corticocortical connections , 1986, The Journal of comparative neurology.
[47] H. Kennedy,et al. Topography of the afferent connectivity of area 17 in the macaque monkey: A double‐labelling study , 1986, The Journal of comparative neurology.
[48] P. Goldman-Rakic,et al. Concurrent overproduction of synapses in diverse regions of the primate cerebral cortex. , 1986, Science.
[49] P. Somogyi,et al. Evidence for interlaminar inhibitory circuits in the striate cortex of the cat , 1987, The Journal of comparative neurology.
[50] J. Chapin,et al. Corticocortical connections within the primary somatosensory cortex of the rat , 1987, The Journal of comparative neurology.
[51] L C Katz,et al. Local circuitry of identified projection neurons in cat visual cortex brain slices , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[52] P. Goldman-Rakic,et al. Common cortical and subcortical targets of the dorsolateral prefrontal and posterior parietal cortices in the rhesus monkey: evidence for a distributed neural network subserving spatially guided behavior , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[53] A. Peters,et al. Enigmatic bipolar cell of rat visual cortex , 1988, The Journal of comparative neurology.
[54] R Porter,et al. Morphology of pyramidal neurones in monkey motor cortex and the synaptic actions of their intracortical axon collaterals. , 1988, The Journal of physiology.
[55] G A Orban,et al. Heterogeneity of GABAergic cells in cat visual cortex , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[56] R Porter,et al. Morphology of neurons in area 4 gamma of the cat's cortex studied with intracellular injection of HRP [corrected and issued with original paging in J Comp Neurol 1988 Nov 8;277(2)]. , 1988, The Journal of comparative neurology.
[57] R. Porter,et al. Morphology of neurons in area 4γ of the cat's cortex studied with intracellular injection of HRP , 1988 .
[58] E. Switkes,et al. Functional anatomy of macaque striate cortex. II. Retinotopic organization , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[59] Kevan A. C. Martin,et al. A Canonical Microcircuit for Neocortex , 1989, Neural Computation.
[60] A. Burkhalter,et al. Intrinsic connections of rat primary visual cortex: Laminar organization of axonal projections , 1989, The Journal of comparative neurology.
[61] J. Kaas,et al. Cortical connections of areas 17 (V‐I) and 18 (V‐II) of squirrels , 1989, The Journal of comparative neurology.
[62] E. G. Jones,et al. Synapses of double bouquet cells in monkey cerebral cortex visualized by calbindin immunoreactivity , 1989, Brain Research.
[63] T. Wiesel,et al. Local circuits and ocular dominance columns in monkey striate cortex , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[64] G. Palm,et al. Density of neurons and synapses in the cerebral cortex of the mouse , 1989, The Journal of comparative neurology.
[65] E G Jones,et al. Visualization of chandelier cell axons by parvalbumin immunoreactivity in monkey cerebral cortex. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[66] 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.
[67] S. Cajal. Recollections of my life , 1989 .
[68] G. Orban,et al. Calbindin D-28K and parvalbumin immunoreactivity is confined to two separate neuronal subpopulations in the cat visual cortex, whereas partial coexistence is shown in the dorsal lateral geniculate nucleus , 1989, Neuroscience Letters.
[69] David P. Friedman,et al. Corticocortical connections predict patches of stimulus‐evoked metabolic activity in monkey somatosensory cortex , 1990, The Journal of comparative neurology.
[70] A. Burkhalter,et al. Organization of local axon collaterals of efferent projection neurons in rat visual cortex , 1990, The Journal of comparative neurology.
[71] Carver A. Mead,et al. Neuromorphic electronic systems , 1990, Proc. IEEE.
[72] J. Morrison,et al. Distribution of parvalbumin immunoreactivity in the visual cortex of Old World monkeys and humans , 1990, The Journal of comparative neurology.
[73] Innervation patterns of single physiologically identified geniculocortical axons in the striate cortex of the tree shrew. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[74] E. Callaway,et al. Emergence and refinement of clustered horizontal connections in cat striate cortex , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[75] A. Hendrickson,et al. Calcium‐binding proteins as markers for subpopulations of GABAergic neurons in monkey striate cortex , 1990, The Journal of comparative neurology.
[76] T A Woolsey,et al. Local intra‐ and interlaminar connections in mouse barrel cortex , 1990, The Journal of comparative neurology.
[77] J. Lund,et al. Heterogeneity of chandelier neurons in monkey neocortex: Corticotropin‐releasing factor‐and parvalbumin‐immunoreactive populations , 1990, The Journal of comparative neurology.
[78] E. G. Jones,et al. A microcolumnar structure of monkey cerebral cortex revealed by immunocytochemical studies of double bouquet cell axons , 1990, Neuroscience.
[79] I Fariñas,et al. Patterns of synaptic input on corticocortical and corticothalamic cells in the cat visual cortex. II. The axon initial segment , 1991, The Journal of comparative neurology.
[80] P. Goldman-Rakic,et al. Preface: Cerebral Cortex Has Come of Age , 1991 .
[81] G. Mitchison. Neuronal branching patterns and the economy of cortical wiring , 1991, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[82] E. G. Jones,et al. Patterns of axon collateralization of identified supragranular pyramidal neurons in the cat auditory cortex. , 1991, Cerebral cortex.
[83] A. Larkman. Dendritic morphology of pyramidal neurones of the visual cortex of the rat: I. Branching patterns , 1991, The Journal of comparative neurology.
[84] D. J. Felleman,et al. Distributed hierarchical processing in the primate cerebral cortex. , 1991, Cerebral cortex.
[85] E. G. Jones,et al. Relationship of intrinsic connections to forelimb movement representations in monkey motor cortex: a correlative anatomic and physiological study. , 1991, Journal of neurophysiology.
[86] J. Lund,et al. Local circuit neurons of macaque monkey striate cortex: III. Neurons of laminae 4B, 4A, and 3B , 1997, The Journal of comparative neurology.
[87] W. Singer,et al. Selection of intrinsic horizontal connections in the visual cortex by correlated neuronal activity. , 1992, Science.
[88] M. Cynader,et al. Quantitative distribution of GABA-immunopositive and -immunonegative neurons and synapses in the monkey striate cortex (area 17). , 1992, Cerebral cortex.
[89] Mingqi Deng,et al. Winner-take-all networks , 1992 .
[90] D. Fitzpatrick,et al. The morphological basis for binocular and ON/OFF convergence in tree shrew striate cortex , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[91] U. Eysel,et al. Cellular organization of reciprocal patchy networks in layer III of cat visual cortex (area 17) , 1992, Neuroscience.
[92] J. B. Levitt,et al. Intrinsic lattice connections of macaque monkey visual cortical area V4 , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[93] R. Malach,et al. Dendritic sampling across processing streams in monkey striate cortex , 1992, The Journal of comparative neurology.
[94] C. Gilbert. Horizontal integration and cortical dynamics , 1992, Neuron.
[95] G. Blasdel,et al. Orientation selectivity, preference, and continuity in monkey striate cortex , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[96] J. Rogers,et al. Calretinin and calbindin-D28k in rat brain: Patterns of partial co-localization , 1992, Neuroscience.
[97] J. Rogers. Immunohistochemical markers in rat cortex: co-localization of calretinin and calbindin-D28k with neuropeptides and GABA , 1992, Brain Research.
[98] E. G. Jones,et al. Characteristics of intracellularly injected infragranular pyramidal neurons in cat primary auditory cortex. , 1992, Cerebral cortex.
[99] Development of subpopulations of GABAergic neurons in cat visual cortical areas. , 1992, Neuroreport.
[100] G. Mitchison. Axonal trees and cortical architecture , 1992, Trends in Neurosciences.
[101] D. Fitzpatrick,et al. Lateral geniculate projections to the superficial layers of visual cortex in the tree shrew , 1992, The Journal of comparative neurology.
[102] J. B. Levitt,et al. Comparison of intrinsic connectivity in different areas of macaque monkey cerebral cortex. , 1993, Cerebral cortex.
[103] A. Grinvald,et al. Relationship between intrinsic connections and functional architecture revealed by optical imaging and in vivo targeted biocytin injections in primate striate cortex. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[104] J. B. Levitt,et al. Topography of pyramidal neuron intrinsic connections in macaque monkey prefrontal cortex (areas 9 and 46) , 1993, The Journal of comparative neurology.
[105] J. DeFelipe,et al. Neocortical neuronal diversity: chemical heterogeneity revealed by colocalization studies of classic neurotransmitters, neuropeptides, calcium-binding proteins, and cell surface molecules. , 1993, Cerebral cortex.
[106] J C Anderson,et al. Form, function, and intracortical projections of neurons in the striate cortex of the monkey Macacus nemestrinus. , 1993, Cerebral cortex.
[107] R. Malach,et al. Cortical hierarchy reflected in the organization of intrinsic connections in macaque monkey visual cortex , 1993, The Journal of comparative neurology.
[108] D. Fitzpatrick,et al. The sublaminar organization of corticogeniculate neurons in layer 6 of macaque striate cortex , 1994, Visual Neuroscience.
[109] J. C. Anderson,et al. Polyneuronal innervation of spiny stellate neurons in cat visual cortex , 1994, The Journal of comparative neurology.
[110] Françoise Condé,et al. Local circuit neurons immunoreactive for calretinin, calbindin D‐28k or parvalbumin in monkey prefronatal cortex: Distribution and morphology , 1994, The Journal of comparative neurology.
[111] J. B. Levitt,et al. Intrinsic cortical connections in macaque visual area V2: Evidence for interaction between different functional streams , 1994, The Journal of comparative neurology.
[112] O. Creutzfeldt. Cortex Cerebri: Performance, Structural and Functional Organization of the Cortex , 1995 .
[113] P. Goldman-Rakic,et al. Intrinsic circuit organization of the major layers and sublayers of the dorsolateral prefrontal cortex in the rhesus monkey , 1995, The Journal of comparative neurology.
[114] H. Killackey,et al. Patterning of local intracortical projections within the vibrissae representation of rat primary somatosensory cortex , 1995, The Journal of comparative neurology.
[115] I Fujita,et al. Intrinsic connections in the macaque inferior temporal cortex , 1996, The Journal of comparative neurology.
[116] E. Callaway,et al. Contributions of individual layer 6 pyramidal neurons to local circuitry in macaque primary visual cortex , 1996, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[117] K. Martin,et al. Excitatory synaptic inputs to spiny stellate cells in cat visual cortex , 1996, Nature.
[118] Paul Leonard Gabbott,et al. Local circuit neurons in the medial prefrontal cortex (areas 24a,b,c, 25 and 32) in the monkey: II. Quantitative areal and laminar distributions , 1996, The Journal of comparative neurology.
[119] T. Freund,et al. Interneurons Containing Calretinin Are Specialized to Control Other Interneurons in the Rat Hippocampus , 1996, The Journal of Neuroscience.
[120] D. Fitzpatrick. The functional organization of local circuits in visual cortex: insights from the study of tree shrew striate cortex. , 1996, Cerebral cortex.
[121] K. Rockland. Two types of corticopulvinar terminations: Round (type 2) and elongate (type 1) , 1996, The Journal of comparative neurology.
[122] R. Guillery,et al. Functional organization of thalamocortical relays. , 1996, Journal of neurophysiology.
[123] D. Fitzpatrick,et al. Specificity in the axonal connections of layer VI neurons in tree shrew striate cortex: evidence for distinct granular and supragranular systems , 1996, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[124] M P Young,et al. Indeterminate Organization of the Visual System , 1996, Science.
[125] J. B. Levitt,et al. Patterns of intrinsic and associational circuitry in monkey prefrontal cortex , 1996, The Journal of comparative neurology.
[126] J. B. Levitt,et al. Relation between patterns of intrinsic lateral connectivity, ocular dominance, and cytochrome oxidase-reactive regions in macaque monkey striate cortex. , 1996, Cerebral cortex.
[127] Paul Leonard Gabbott,et al. Local circuit neurons in the medial prefrontal cortex (areas 24a,b,c, 25 and 32) in the monkey: I. Cell morphology and morphometrics , 1996, The Journal of comparative neurology.
[128] Y. Kubota,et al. GABAergic cell subtypes and their synaptic connections in rat frontal cortex. , 1997, Cerebral cortex.
[129] A. Peters,et al. The organization of double bouquet cells in monkey striate cortex , 1997, Journal of neurocytology.
[130] U. Eysel,et al. Orientation-specific relationship between populations of excitatory and inhibitory lateral connections in the visual cortex of the cat. , 1997, Cerebral cortex.
[131] V. Meskenaite,et al. Calretinin‐immunoreactive local circuit neurons in area 17 of the cynomolgus monkey, Macaca fascicularis , 1997, The Journal of comparative neurology.
[132] M. Deschenes,et al. Intracortical Axonal Projections of Lamina VI Cells of the Primary Somatosensory Cortex in the Rat: A Single-Cell Labeling Study , 1997, The Journal of Neuroscience.
[133] W. Singer,et al. Functional Specificity of Long-Range Intrinsic and Interhemispheric Connections in the Visual Cortex of Strabismic Cats , 1997, The Journal of Neuroscience.
[134] Charles Q. Wu,et al. Local circuit neurons of macaque monkey striate cortex: IV. neurons of laminae 1‐3A , 1997, The Journal of comparative neurology.
[135] A. Keller,et al. Intrinsic circuitry and physiological properties of pyramidal neurons in rat barrel cortex , 1997, Experimental Brain Research.
[136] D. Fitzpatrick,et al. Orientation Selectivity and the Arrangement of Horizontal Connections in Tree Shrew Striate Cortex , 1997, The Journal of Neuroscience.
[137] R B Tootell,et al. Organization of intrinsic connections in owl monkey area MT. , 1997, Cerebral cortex.
[138] C. Koch,et al. Constraints on cortical and thalamic projections: the no-strong-loops hypothesis , 1998, Nature.
[139] E. Callaway. Local circuits in primary visual cortex of the macaque monkey. , 1998, Annual review of neuroscience.
[140] J. Lund,et al. Anatomical comparison of the macaque and marsupial visual cortex: Common features that may reflect retention of essential cortical elements , 1998, The Journal of comparative neurology.
[141] N. Suga,et al. Connections among functional areas in the mustached bat auditory cortex. , 1998, The Journal of comparative neurology.
[142] M. L. Pucak,et al. Synaptic targets of pyramidal neurons providing intrinsic horizontal connections in monkey prefrontal cortex , 1998, The Journal of comparative neurology.
[143] C. A. Gallagher,et al. Ascending Projections of Simple and Complex Cells in Layer 6 of the Cat Striate Cortex , 1998, The Journal of Neuroscience.
[144] G. Elston,et al. Morphological variation of layer III pyramidal neurones in the occipitotemporal pathway of the macaque monkey visual cortex. , 1998, Cerebral cortex.
[145] Mnh,et al. Histologie du Système Nerveux de Lʼhomme et des Vertébrés , 1998 .
[146] H. Kennedy,et al. Area‐specific laminar distribution of cortical feedback neurons projecting to cat area 17: Quantitative analysis in the adult and during ontogeny , 1998, The Journal of comparative neurology.
[147] J. Allman,et al. A neuronal morphologic type unique to humans and great apes. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[148] E G Jones,et al. Making brain connections: neuroanatomy and the work of TPS Powell, 1923-1996. , 1999, Annual review of neuroscience.
[149] J. C. Anderson,et al. Dendritic asymmetry cannot account for directional responses of neurons in visual cortex , 1999, Nature Neuroscience.
[150] T. Poggio,et al. Hierarchical models of object recognition in cortex , 1999, Nature Neuroscience.
[151] K. Martin,et al. Intracortical excitation of spiny neurons in layer 4 of cat striate cortex in vitro. , 1999, Cerebral cortex.
[152] M G Rosa,et al. Cellular heterogeneity in cerebral cortex: A study of the morphology of pyramidal neurones in visual areas of the marmoset monkey , 1999, The Journal of comparative neurology.
[153] B. Connors,et al. Efficacy of Thalamocortical and Intracortical Synaptic Connections Quanta, Innervation, and Reliability , 1999, Neuron.
[154] D. Fitzpatrick. Seeing beyond the receptive field in primary visual cortex , 2000, Current Opinion in Neurobiology.
[155] H. Kennedy,et al. Laminar Distribution of Neurons in Extrastriate Areas Projecting to Visual Areas V1 and V4 Correlates with the Hierarchical Rank and Indicates the Operation of a Distance Rule , 2000, The Journal of Neuroscience.
[156] Wolfgang Maass,et al. On the Computational Power of Winner-Take-All , 2000, Neural Computation.
[157] G. Elston,et al. Pyramidal Cells, Patches, and Cortical Columns: a Comparative Study of Infragranular Neurons in TEO, TE, and the Superior Temporal Polysensory Area of the Macaque Monkey , 2000, The Journal of Neuroscience.
[158] K. Martin,et al. Termination of the geniculocortical projection in the striate cortex of macaque monkey: A quantitative immunoelectron microscopic study , 2000, The Journal of comparative neurology.
[159] B. Sakmann,et al. The Excitatory Neuronal Network of Rat Layer 4 Barrel Cortex , 2000, The Journal of Neuroscience.
[160] R. Guillery,et al. Exploring the Thalamus , 2000 .
[161] A. Keller,et al. Characteristics of GABAergic neurons and their synaptic relationships with intrinsic axons in the cat motor cortex. , 2000, Somatosensory & motor research.
[162] Dmitri B. Chklovskii,et al. Orientation Preference Patterns in Mammalian Visual Cortex A Wire Length Minimization Approach , 2001, Neuron.
[163] G. Blasdel,et al. Functional Retinotopy of Monkey Visual Cortex , 2001, The Journal of Neuroscience.
[164] G. Elston,et al. The Pyramidal Cell in Cognition: A Comparative Study in Human and Monkey , 2001, The Journal of Neuroscience.
[165] E M Callaway,et al. Layer-Specific Input to Distinct Cell Types in Layer 6 of Monkey Primary Visual Cortex , 2001, The Journal of Neuroscience.
[166] M P Stryker,et al. Rapid Anatomical Plasticity of Horizontal Connections in the Developing Visual Cortex , 2001, The Journal of Neuroscience.
[167] Lawrence C. Sincich,et al. Oriented Axon Projections in Primary Visual Cortex of the Monkey , 2001, The Journal of Neuroscience.
[168] T. Pasternak,et al. Long‐term neurochemical changes after visual cortical lesions in the adult cat , 2001, The Journal of comparative neurology.
[169] Alex S. Ferecskó,et al. One axon-multiple functions: Specificity of lateral inhibitory connections by large basket cells , 2002, Journal of neurocytology.
[170] I. Fujita. The inferior temporal cortex: Architecture, computation, and representation , 2002, Journal of neurocytology.
[171] Edward M Callaway,et al. Cell type specificity of local cortical connections , 2002, Journal of neurocytology.
[172] David A. Lewis,et al. Specificity in the functional architecture of primate prefrontal cortex , 2002, Journal of neurocytology.
[173] H. Markram,et al. Anatomical, physiological, molecular and circuit properties of nest basket cells in the developing somatosensory cortex. , 2002, Cerebral cortex.
[174] Y. Kawaguchi,et al. Parvalbumin, somatostatin and cholecystokinin as chemical markers for specific GABAergic interneuron types in the rat frontal cortex , 2002, Journal of neurocytology.
[175] J. DeFelipe,et al. Microstructure of the neocortex: Comparative aspects , 2002, Journal of neurocytology.
[176] Dmitri B. Chklovskii,et al. Wiring Optimization in Cortical Circuits , 2002, Neuron.
[177] Y. Fukui,et al. Distribution of calbindin-D28K immunoreactive neurons in rat primary motor cortex. , 2002, The journal of medical investigation : JMI.
[178] Guy N Elston,et al. Cortical heterogeneity: Implications for visual processing and polysensory integration , 2002, Journal of neurocytology.
[179] Javier DeFelipe,et al. Cortical interneurons: from Cajal to 2001. , 2002, Progress in brain research.
[180] Jean Bennett,et al. Lateral Connectivity and Contextual Interactions in Macaque Primary Visual Cortex , 2002, Neuron.
[181] J. C. Nelson,et al. Excitatory inputs to spiny cells in layers 4 and 6 of cat striate cortex. , 2002, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[182] David Fitzpatrick,et al. Emergent Properties of Layer 2/3 Neurons Reflect the Collinear Arrangement of Horizontal Connections in Tree Shrew Visual Cortex , 2003, The Journal of Neuroscience.
[183] R. Kötter,et al. Cell Type-Specific Circuits of Cortical Layer IV Spiny Neurons , 2003, The Journal of Neuroscience.
[184] G. Elston. The pyramidal neuron in occipital, temporal and prefrontal cortex of the owl monkey (Aotus trivirgatus): regional specialization in cell structure , 2003, The European journal of neuroscience.
[185] G. Orban,et al. Calcium binding proteins and neuropeptides as molecular markers of GABAergic interneurons in the cat visual cortex , 2004, Experimental Brain Research.
[186] Nicholas V. Swindale,et al. A model for the coordinated development of columnar systems in primate striate cortex , 2004, Biological Cybernetics.
[187] E. G. Jones,et al. Two classes of cortical GABA neurons defined by differential calcium binding protein immunoreactivities , 2004, Experimental Brain Research.
[188] T. A. Woolsey,et al. Local axonal trajectories in mouse barrel cortex , 2004, Experimental Brain Research.
[189] W. Singer,et al. Development of horizontal intrinsic connections in cat striate cortex , 2004, Experimental Brain Research.