Publications
Filters: Author is James J {DiCarlo} [Clear All Filters]
[107] What is the middle face patch?. Vol. 40. San Diego, CA; 2010.
[op_de_beeck_discrimination_2006] "Discrimination training alters object representations in human extrastriate cortex." The Journal of Neuroscience: The Official Journal of the Society for Neuroscience. 2006;26:13025-13036. Abstract
[op_de_beeck_stable_2008] "A stable topography of selectivity for unfamiliar shape classes in monkey inferior temporal cortex." Cerebral Cortex {(New} York, {N.Y.:} 1991). 2008;18:1676-1694. Abstract
[op_de_beeck_fine-scale_2008] "Fine-scale spatial organization of face and object selectivity in the temporal lobe: do functional magnetic resonance imaging, optical imaging, and electrophysiology agree?" The Journal of Neuroscience: The Official Journal of the Society for Neuroscience. 2008;28:11796-11801. Abstract
[cox_high-resolution_2008] "High-resolution three-dimensional microelectrode brain mapping using stereo microfocal X-ray imaging." Journal of Neurophysiology. 2008;100:2966-2976. Abstract
[cox_does_2008] "Does learned shape selectivity in inferior temporal cortex automatically generalize across retinal position?" The Journal of Neuroscience: The Official Journal of the Society for Neuroscience. 2008;28:10045-10055. Abstract
[cox_breaking_2005] "'Breaking' position-invariant object recognition." Nature Neuroscience. 2005;8:1145-1147. Abstract
[dicarlo_neuroscience:_2006] "Neuroscience: making faces in the brain." Nature. 2006;442:644.
[109] "How does the brain solve visual object recognition?" Neuron. 2012;73(3):415-34. Abstract
[dicarlo_untangling_2007] "Untangling invariant object recognition." Trends in Cognitive Sciences. 2007;11:333-341. Abstract
[dicarlo_anterior_2003] "Anterior inferotemporal neurons of monkeys engaged in object recognition can be highly sensitive to object retinal position." Journal of Neurophysiology. 2003;89:3264-3278. Abstract
[dicarlo_using_2005] "Using neuronal latency to determine sensory-motor processing pathways in reaction time tasks." Journal of Neurophysiology. 2005;93:2974-2986. Abstract
[dicarlo_receptive_2002] "Receptive field structure in cortical area 3b of the alert monkey." Behavioural Brain Research. 2002;135:167-178. Abstract
[hung_fast_2005] "Fast readout of object identity from macaque inferior temporal cortex." Science {(New} York, {N.Y.)}. 2005;310:863-866. Abstract
[106] Towards large-scale, high resolution maps of object selectivity in inferior temporal cortex. Vol. 7. Salt Lake City, UT; 2010.
[111] "Precedence of the eye region in neural processing of faces." J. Neurosci.. 2012;32(47):16666-82. Abstract
[kourtzi_learning_2006] "Learning and neural plasticity in visual object recognition." Current Opinion in Neurobiology. 2006;16:152-158. Abstract
[kreiman_object_2006] "Object selectivity of local field potentials and spikes in the macaque inferior temporal cortex." Neuron. 2006;49:433-445. Abstract
[li_what_2009] "What response properties do individual neurons need to underlie position and clutter "invariant" object recognition?" Journal of Neurophysiology. 2009;102:360-376. Abstract
[li_unsupervised_2010] "Unsupervised natural visual experience rapidly reshapes size-invariant object representation in inferior temporal cortex." Neuron. 2010;67:1062-1075. Abstract
[110] "Neuronal learning of invariant object representation in the ventral visual stream is not dependent on reward." J. Neurosci.. 2012;32(19):6611-20. Abstract
[li_unsupervised_2008] "Unsupervised natural experience rapidly alters invariant object representation in visual cortex." Science {(New} York, {N.Y.)}. 2008;321:1502-1507. Abstract
[pinto_why_2008] "Why is real-world visual object recognition hard?" {PLoS} Computational Biology. 2008;4:e27. Abstract
[pinto_high-throughput_2009] "A high-throughput screening approach to discovering good forms of biologically inspired visual representation." {PLoS} Computational Biology. 2009;5:e1000579. Abstract
[rust_selectivity_2010] "Selectivity and tolerance ("invariance") both increase as visual information propagates from cortical area V4 to {IT}." The Journal of Neuroscience: The Official Journal of the Society for Neuroscience. 2010;30:12978-12995. Abstract
[zoccolan_trade-off_2007] "Trade-off between object selectivity and tolerance in monkey inferotemporal cortex." The Journal of Neuroscience: The Official Journal of the Society for Neuroscience. 2007;27:12292-12307. Abstract
[zoccolan_rodent_2009] "A rodent model for the study of invariant visual object recognition." Proceedings of the National Academy of Sciences of the United States of America. 2009;106:8748-8753. Abstract
[zoccolan_multiple_2005] "Multiple object response normalization in monkey inferotemporal cortex." The Journal of Neuroscience: The Official Journal of the Society for Neuroscience. 2005;25:8150-8164. Abstract
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