Olfactory processing: maps, time and codes
暂无分享,去创建一个
[1] 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.
[2] R. Nicoll,et al. An intracellular analysis of dendrodendritic inhibition in the turtle in vitro olfactory bulb , 1982, The Journal of physiology.
[3] J. Kelsey. Studies on Excitation and Inhibition in the Retina , 1976 .
[4] G. Laurent,et al. Odour encoding by temporal sequences of firing in oscillating neural assemblies , 1996, Nature.
[5] E. Adrian. Olfactory reactions in the brain of the hedgehog , 1942, The Journal of physiology.
[6] K. Ressler,et al. Target-independent pattern specification in the olfactory epithelium , 1995, Neuron.
[7] Philip H Smith,et al. Projections of physiologically characterized spherical bushy cell axons from the cochlear nucleus of the cat: Evidence for delay lines to the medial superior olive , 1993, The Journal of comparative neurology.
[8] B. Lewin. On neuronal specificity and the molecular basis of perception , 1994, Cell.
[9] M. Constantine-Paton,et al. Eye-specific segregation requires neural activity in three-eyed Rana pipiens , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[10] G. Laurent. Dynamical representation of odors by oscillating and evolving neural assemblies , 1996, Trends in Neurosciences.
[11] William Bialek,et al. Spikes: Exploring the Neural Code , 1996 .
[12] G. Shepherd,et al. Functional organization of rat olfactory bulb analysed by the 2‐deoxyglucose method , 1979, The Journal of comparative neurology.
[13] KD Miller. A model for the development of simple cell receptive fields and the ordered arrangement of orientation columns through activity-dependent competition between ON- and OFF-center inputs , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[14] M. Meredith,et al. Patterned response to odor in mammalian olfactory bulb: the influence of intensity. , 1986, Journal of neurophysiology.
[15] T. Sejnowski. Computational models and the development of topographic projections , 1987, Trends in Neurosciences.
[16] J. Kauer. Response patterns of amphibian olfactory bulb neurones to odour stimulation , 1974, The Journal of physiology.
[17] Richard Axel,et al. Visualizing an Olfactory Sensory Map , 1996, Cell.
[18] R. Axel,et al. A novel multigene family may encode odorant receptors: A molecular basis for odor recognition , 1991, Cell.
[19] Masakazu Konishi,et al. Deciphering the Brain's Codes , 1999, Neural Computation.
[20] J S Kauer,et al. Salamander olfactory bulb neuronal activity observed by video rate, voltage-sensitive dye imaging. II. Spatial and temporal properties of responses evoked by electric stimulation. , 1995, Journal of neurophysiology.
[21] Richard Axel,et al. Topographic organization of sensory projections to the olfactory bulb , 1994, Cell.
[22] J. J. Hopfield,et al. Pattern recognition computation using action potential timing for stimulus representation , 1995, Nature.
[23] Masakazu Konishi. Centrally synthesized maps of sensory space , 1986, Trends in Neurosciences.
[24] Carver Mead,et al. Analog VLSI and neural systems , 1989 .
[25] Linda B. Buck,et al. Information coding in the olfactory system: Evidence for a stereotyped and highly organized epitope map in the olfactory bulb , 1994, Cell.
[26] D. Kleinfeld,et al. Central and reflex neuronal responses elicited by odor in a terrestrial mollusk. , 1996, Journal of neurophysiology.
[27] L. Buck,et al. Information coding in the vertebrate olfactory system. , 1996, Annual review of neuroscience.
[28] J. Kauer,et al. A chemical-detecting system based on a cross-reactive optical sensor array , 1996, Nature.
[29] N. Spruston,et al. Activity-dependent action potential invasion and calcium influx into hippocampal CA1 dendrites. , 1995, Science.
[30] Cori Bargmann,et al. odr-10 Encodes a Seven Transmembrane Domain Olfactory Receptor Required for Responses to the Odorant Diacetyl , 1996, Cell.
[31] L A JEFFRESS,et al. A place theory of sound localization. , 1948, Journal of comparative and physiological psychology.
[32] K. Mori,et al. Relation of chemical structure to specificity of response in olfactory glomeruli , 1995, Current Opinion in Neurobiology.
[33] G M Shepherd,et al. Dendrodendritic synaptic pathway for inhibition in the olfactory bulb. , 1966, Experimental neurology.
[34] E. Marg. A VISION OF THE BRAIN , 1994 .
[35] G. Laurent,et al. Encoding of Olfactory Information with Oscillating Neural Assemblies , 1994, Science.
[36] J. Hildebrand,et al. Analysis of chemical signals by nervous systems. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[37] M. Konishi,et al. A circuit for detection of interaural time differences in the brain stem of the barn owl , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[38] Richard Axel,et al. Coding of olfactory information: Topography of odorant receptor expression in the catfish olfactory epithelium , 1993, Cell.
[39] G. Laurent,et al. Temporal Representations of Odors in an Olfactory Network , 1996, The Journal of Neuroscience.
[40] S. Firestein. Scentsational Ion Channels , 1996, Neuron.
[41] M. Konishi,et al. Axonal delay lines for time measurement in the owl's brainstem. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[42] J. Kauer,et al. Rapid analyte recognition in a device based on optical sensors and the olfactory system. , 1996, Analytical chemistry.
[43] J. O'Keefe,et al. The hippocampus as a spatial map. Preliminary evidence from unit activity in the freely-moving rat. , 1971, Brain research.
[44] B L McNaughton,et al. Dynamics of the hippocampal ensemble code for space. , 1993, Science.
[45] An in vitro preparation of frog nose and brain for the study of odour-evoked oscillatory activity , 1996, Journal of Neuroscience Methods.
[46] J S Kauer,et al. Salamander olfactory bulb neuronal activity observed by video rate, voltage-sensitive dye imaging. III. Spatial and temporal properties of responses evoked by odorant stimulation. , 1995, Journal of neurophysiology.
[47] R U Muller,et al. Hippocampal place cells connected by Hebbian synapses can solve spatial problems , 1996, Hippocampus.
[48] M T Wallace,et al. Development of Multisensory Neurons and Multisensory Integration in Cat Superior Colliculus , 1997, The Journal of Neuroscience.
[49] G. Laurent,et al. Distinct Mechanisms for Synchronization and Temporal Patterning of Odor-Encoding Neural Assemblies , 1996, Science.
[50] G. Laurent,et al. GABAergic synapses in the antennal lobe and mushroom body of the locust olfactory system , 1996, The Journal of comparative neurology.
[51] D. Senseman,et al. Odor-elicited activity monitored simultaneously from 124 regions of the salamander olfactory bulb using a voltage-sensitive dye , 1987, Brain Research.