Multiple learning parameters differentially regulate olfactory generalization.
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Thomas A Cleland | T. A. Cleland | Venkata A Narla | Karim Boudadi | Venkata Anupama Narla | Karim Boudadi
[1] J. Falk. Physiology and Behavior. , 1973 .
[2] E T Rolls,et al. The rules of formation of the olfactory representations found in the orbitofrontal cortex olfactory areas in primates. , 2001, Chemical senses.
[3] Cyriel M A Pennartz,et al. Neural coding of reward magnitude in the orbitofrontal cortex of the rat during a five-odor olfactory discrimination task. , 2007, Learning & memory.
[4] A. Sclafani,et al. Nutrient-conditioned flavor preference and incentive value measured by progressive ratio licking in rats , 2006, Physiology & Behavior.
[5] J. Kruskal. Multidimensional scaling by optimizing goodness of fit to a nonmetric hypothesis , 1964 .
[6] S. Klein,et al. Animal Learning and Behavior , 2008 .
[7] N. Guttman,et al. Discriminability and stimulus generalization. , 1956, Journal of experimental psychology.
[8] S. Nakanishi,et al. Refinement of odor molecule tuning by dendrodendritic synaptic inhibition in the olfactory bulb. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[9] Thomas A. Cleland,et al. Cholinergic modulation of sensory representations in the olfactory bulb , 2002, Neural Networks.
[10] T. A. Cleland,et al. Intensity modulation of olfactory acuity. , 2003, Behavioral neuroscience.
[11] R. Rescorla,et al. A theory of Pavlovian conditioning : Variations in the effectiveness of reinforcement and nonreinforcement , 1972 .
[12] M. Kadohisa,et al. Cortical contributions to olfaction: plasticity and perception. , 2006, Seminars in cell & developmental biology.
[13] R. Rescorla. A theory of pavlovian conditioning: The effectiveness of reinforcement and non-reinforcement , 1972 .
[14] R. Nosofsky. Attention, similarity, and the identification-categorization relationship. , 1986, Journal of experimental psychology. General.
[15] M. Gabriel,et al. Learning and Computational Neuroscience: Foundations of Adaptive Networks , 1990 .
[16] G. Phillips,et al. Suppression or facilitation of operant behaviour by raclopride dependent on concentration of sucrose reward , 2005, Psychopharmacology.
[17] Thomas A Cleland,et al. Cholinergic modulation in the olfactory bulb influences spontaneous olfactory discrimination in adult rats , 2006, The European journal of neuroscience.
[18] Thomas A. Cleland,et al. Behavioral models of odor similarity. , 2002, Behavioral neuroscience.
[19] Andreas T. Schaefer,et al. Maintaining Accuracy at the Expense of Speed Stimulus Similarity Defines Odor Discrimination Time in Mice , 2004, Neuron.
[20] L. C. Katz,et al. Optical Imaging of Odorant Representations in the Mammalian Olfactory Bulb , 1999, Neuron.
[21] B. Smith,et al. Olfactory conditioning in the honey bee, Apis mellifera: Effects of odor intensity , 1997, Physiology & Behavior.
[22] A. Sclafani,et al. The relationship between food reward and satiation revisited , 2004, Physiology & Behavior.
[23] S Fusi,et al. Forming classes by stimulus frequency: Behavior and theory , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[24] Michael Leon,et al. Spontaneous versus Reinforced Olfactory Discriminations , 2002, The Journal of Neuroscience.
[25] Eugene Galanter,et al. Handbook of mathematical psychology: I. , 1963 .
[26] A. Sclafani,et al. Reinforcement value of sucrose measured by progressive ratio operant licking in the rat , 2003, Physiology & Behavior.
[27] Ralph R. Miller,et al. Assessment of the Rescorla-Wagner model. , 1995 .
[28] E. Rubel,et al. Journal of Experimental Psychology: Animal Behavior Processes Influence of Acoustic Experience on the Ontogeny of Frequency Generalization Gradients in the Chicken , 2022 .
[29] T. B. Roby,et al. Reward value of a non-nutritive sweet-taste. , 1950, Journal of comparative and physiological psychology.
[30] R. Shepard. The analysis of proximities: Multidimensional scaling with an unknown distance function. II , 1962 .
[31] M. Hasselmo,et al. Selective loss of cholinergic neurons projecting to the olfactory system increases perceptual generalization between similar, but not dissimilar, odorants. , 2001, Behavioral neuroscience.
[32] Michael Leon,et al. Olfactory coding in the mammalian olfactory bulb , 2003, Brain Research Reviews.
[33] Brett A. Johnson,et al. Relational representation in the olfactory system , 2007, Proceedings of the National Academy of Sciences.
[34] Neil Stewart,et al. Similarity and dissimilarity as evidence in perceptual categorization , 2005 .
[35] P. Brennan,et al. NEURAL MECHANISMS OF MAMMALIAN OLFACTORY LEARNING , 1997, Progress in Neurobiology.
[36] R. Shepard. Discrimination and generalization in identification and classification: Comment on Nosofsky. , 1986 .
[37] B. Smith,et al. Variation in complex olfactory stimuli and its influence on odour recognition , 2004, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[38] R. Shepard,et al. Toward a universal law of generalization for psychological science. , 1987, Science.
[39] Thomas A Cleland,et al. Distinct neural mechanisms mediate olfactory memory formation at different timescales. , 2008, Learning & memory.
[40] Richard Axel,et al. Visualizing an Olfactory Sensory Map , 1996, Cell.
[41] K. Bath,et al. Variant Brain-Derived Neurotrophic Factor (Val66Met) Alters Adult Olfactory Bulb Neurogenesis and Spontaneous Olfactory Discrimination , 2008, The Journal of Neuroscience.
[42] Michael E Hasselmo,et al. Behavioral Responses to Aliphatic Aldehydes Can Be Predicted From Known Electrophysiological Responses of Mitral Cells in the Olfactory Bulb , 1999, Physiology & Behavior.
[43] R. Shepard. Perceptual-cognitive universals as reflections of the world , 1994, Psychonomic bulletin & review.
[44] N. Mackintosh,et al. Associative learning and elemental representation: II. Generalization and discrimination , 2002, Animal learning & behavior.
[45] Edgar H Vogel,et al. Stimulus representation in SOP: I Theoretical rationalization and some implications , 2003, Behavioural Processes.
[46] A. Tversky. Features of Similarity , 1977 .
[47] C. Linster,et al. Role of centrifugal projections to the olfactory bulb in olfactory processing. , 2006, Learning & memory.
[48] W. F. Prokasy,et al. Classical conditioning II: Current research and theory. , 1972 .
[49] R. Nosofsky. Attention, similarity, and the identification-categorization relationship. , 1986 .
[50] Richard S. Sutton,et al. Time-Derivative Models of Pavlovian Reinforcement , 1990 .
[51] Praveen Sethupathy,et al. Non-topographical contrast enhancement in the olfactory bulb , 2006, BMC Neuroscience.
[52] D. Norman. Learning and Memory , 1982 .
[53] N. Mackintosh,et al. An elemental model of associative learning: I. Latent inhibition and perceptual learning , 2000 .
[54] J. Houston. Generalization and discrimination , 1981 .
[55] Richard C. Atkinson,et al. Stimulus Sampling Theory , 1967 .
[56] R. Shepard. The analysis of proximities: Multidimensional scaling with an unknown distance function. I. , 1962 .