Neural correlates of implicit object identification
暂无分享,去创建一个
M Boucart | G Humphreys | G. Humphreys | J. Foucher | D. Pins | M. Boucart | M. Meyer | D Pins | M. E Meyer | J Foucher
[1] Richard S. J. Frackowiak,et al. The anatomy of phonological and semantic processing in normal subjects. , 1992, Brain : a journal of neurology.
[2] Richard S. J. Frackowiak,et al. The role of the right hemisphere in the interpretation of figurative aspects of language. A positron emission tomography activation study. , 1994, Brain : a journal of neurology.
[3] Craig Jones,et al. Attention to local form information can prevent access to semantic information , 2002, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[4] R. Malach,et al. Object-related activity revealed by functional magnetic resonance imaging in human occipital cortex. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[5] Jonathan E. Jennings,et al. An fMRI version of the Farnsworth-Munsell 100-Hue test reveals multiple color-selective areas in human ventral occipitotemporal cortex. , 1999, Cerebral cortex.
[6] M. Tarr,et al. Levels of categorization in visual recognition studied using functional magnetic resonance imaging , 1997, Current Biology.
[7] W. Paulus,et al. The time course and location of cerebral evoked activity associated with the processing of colour stimuli in man , 1993, Neuroscience Letters.
[8] Scott T. Grafton,et al. Premotor Cortex Activation during Observation and Naming of Familiar Tools , 1997, NeuroImage.
[9] G. Humphreys,et al. Selection by color and form in vision. , 1997, Journal of experimental psychology. Human perception and performance.
[10] K. Uğurbil,et al. Neural correlates of visual form and visual spatial processing , 1999, Human brain mapping.
[11] M. Farah,et al. A functional MRI study of mental image generation , 1997, Neuropsychologia.
[12] S M Kosslyn,et al. Identifying objects seen from different viewpoints. A PET investigation. , 1994, Brain : a journal of neurology.
[13] P. Cavanagh,et al. Retinotopy and color sensitivity in human visual cortical area V8 , 1998, Nature Neuroscience.
[14] Josh H. McDermott,et al. Functional imaging of human visual recognition. , 1996, Brain research. Cognitive brain research.
[15] John C. Rothwell,et al. Left posterior BA37 is involved in object recognition: a TMS study , 2001, Neuropsychologia.
[16] I Law,et al. Categorization and category effects in normal object recognition A PET Study , 2000, Neuropsychologia.
[17] M Corbetta,et al. Attentional modulation of neural processing of shape, color, and velocity in humans. , 1990, Science.
[18] K. J. Friston,et al. Phonological retrieval and semantic processing during naming tasks , 1996, NeuroImage.
[19] J. C. Meadows. Disturbed perception of colours associated with localized cerebral lesions. , 1974, Brain : a journal of neurology.
[20] J. Sergent,et al. Functional neuroanatomy of face and object processing. A positron emission tomography study. , 1992, Brain : a journal of neurology.
[21] M. Corbetta,et al. Selective and divided attention during visual discriminations of shape, color, and speed: functional anatomy by positron emission tomography , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[22] J. Sanes,et al. Combined visual attention and finger movement effects on human brain representations , 2001, Experimental Brain Research.
[23] S. Tipper,et al. Negative priming between pictures and words in a selective attention task: Evidence for semantic processing of ignored stimuli , 1988, Memory & cognition.
[24] Stephen M. Kosslyn,et al. Form-Specific Explicit and Implicit Memory in the Right Cerebral Hemisphere , 1994 .
[25] N. Kanwisher,et al. Mental Imagery of Faces and Places Activates Corresponding Stimulus-Specific Brain Regions , 2000, Journal of Cognitive Neuroscience.
[26] W. Glaser,et al. The time course of picture-word interference. , 1984 .
[27] J. Haxby,et al. Attribute-based neural substrates in temporal cortex for perceiving and knowing about objects , 1999, Nature Neuroscience.
[28] A. Damasio,et al. Central achromatopsia , 1980, Neurology.
[29] S. Edelman,et al. Human Brain Mapping 6:316–328(1998) � A Sequence of Object-Processing Stages Revealed by fMRI in the Human Occipital Lobe , 2022 .
[30] S. Engel,et al. Colour tuning in human visual cortex measured with functional magnetic resonance imaging , 1997, Nature.
[31] C. Price,et al. Three Distinct Ventral Occipitotemporal Regions for Reading and Object Naming , 1999, NeuroImage.
[32] Colin M. Macleod. Half a century of research on the Stroop effect: an integrative review. , 1991, Psychological bulletin.
[33] W. Glaser,et al. The time course of picture-word interference. , 1984, Journal of experimental psychology. Human perception and performance.
[34] G. Logan,et al. Converging operations in the study of visual selective attention , 1996 .
[35] O. Paulson,et al. Perceptual differentiation and category effects in normal object recognition: a PET study. , 1999, Brain : a journal of neurology.
[36] G W Humphreys,et al. Integration of Physical and Semantic Information in Object Processing , 1997, Perception.
[37] Leslie G. Ungerleider,et al. Neural correlates of category-specific knowledge , 1996, Nature.
[38] I. Biederman,et al. Scene perception: Detecting and judging objects undergoing relational violations , 1982, Cognitive Psychology.
[39] N. Sadato,et al. Naming of animals and tools: a functional magnetic resonance imaging study of categorical differences in the human brain areas commonly used for naming visually presented objects , 2000, Neuroscience Letters.
[40] Richard S. J. Frackowiak,et al. Differential activation of right and left posterior sylvian regions by semantic and phonological tasks: a positron-emission tomography study in normal human subjects , 1994, Neuroscience Letters.
[41] J Sergent. Influence of task and input factors on hemispheric involvement in face processing. , 1985, Journal of experimental psychology. Human perception and performance.
[42] R. Frackowiak,et al. Demonstrating the implicit processing of visually presented words and pseudowords. , 1996, Cerebral cortex.
[43] J. Gore,et al. An Event-Related fMRI Study of Implicit Phrase-Level Syntactic and Semantic Processing , 1999, NeuroImage.
[44] Stefano F. Cappa,et al. Word and picture matching: a PET study of semantic category effects , 1999, Neuropsychologia.
[45] S. Kosslyn,et al. Identifying objects at different levels of hierarchy: A positron emission tomography study , 1995 .
[46] Alex Martin,et al. Experience-dependent modulation of category-related cortical activity. , 2002, Cerebral cortex.
[47] S. C. Strother,et al. The Quantitative Evaluation of Functional Neuroimaging Experiments: Mutual Information Learning Curves , 2002, NeuroImage.
[48] S. Edelman,et al. Cue-Invariant Activation in Object-Related Areas of the Human Occipital Lobe , 1998, Neuron.
[49] Leslie G. Ungerleider,et al. The Representation of Objects in the Human Occipital and Temporal Cortex , 2000, Journal of Cognitive Neuroscience.
[50] G. Humphreys,et al. Global shape cannot be attended without object identification. , 1992, Journal of experimental psychology. Human perception and performance.
[51] P E Roland,et al. Processing and Analysis of Form, Colour and Binocular Disparity in the Human Brain: Functional Anatomy by Positron Emission Tomography , 1994, The European journal of neuroscience.
[52] Leslie G. Ungerleider,et al. Visual Imagery of Famous Faces: Effects of Memory and Attention Revealed by fMRI , 2002, NeuroImage.
[53] Alan C. Evans,et al. Functional activation of the human frontal cortex during the performance of verbal working memory tasks. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[54] Leslie G. Ungerleider,et al. The functional organization of human extrastriate cortex: a PET-rCBF study of selective attention to faces and locations , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[55] G. Winocur,et al. Dissociation of pathways for object and spatial vision: a PET study in humans , 1995, Neuroreport.
[56] Richard D. Hichwa,et al. A neural basis for lexical retrieval , 1996, Nature.
[57] Leslie G. Ungerleider,et al. Discrete Cortical Regions Associated with Knowledge of Color and Knowledge of Action , 1995, Science.
[58] G W Humphreys,et al. Automatic access to object identity: attention to global information, not to particular physical dimensions, is important. , 1995, Journal of experimental psychology. Human perception and performance.
[59] G W Humphreys,et al. Attention to orientation, size, luminance, and color: attentional failure within the form domain. , 1994, Journal of experimental psychology. Human perception and performance.
[60] A. Ishai,et al. Distributed neural systems for the generation of visual images , 2000, NeuroImage.
[61] W. Glaser. Picture naming , 1992, Cognition.
[62] G. Humphreys,et al. Automatic object identification: an fMRI study , 2000, Neuroreport.
[63] J. Driver,et al. Perceptual awareness and its loss in unilateral neglect and extinction , 2001, Cognition.
[64] Thomas E. Nichols,et al. Thresholding of Statistical Maps in Functional Neuroimaging Using the False Discovery Rate , 2002, NeuroImage.
[65] R. Henson,et al. Multiple levels of visual object constancy revealed by event-related fMRI of repetition priming , 2002, Nature Neuroscience.
[66] S. Tipper. The Negative Priming Effect: Inhibitory Priming by Ignored Objects , 1985, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[67] Reginald B. Adams,et al. A Comparison of Neural Circuits Underlying Auditory and Visual Object Categorization , 2002, NeuroImage.
[68] H Koizumi,et al. Functional mapping of the human colour centre with echo-planar magnetic resonance imaging , 1995, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[69] G. Orban,et al. Positron-emission tomography imaging of long-term shape recognition challenges. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[70] Richard S. J. Frackowiak,et al. Functional anatomy of a common semantic system for words and pictures , 1996, Nature.
[71] S. Zeki,et al. A century of cerebral achromatopsia. , 1990, Brain : a journal of neurology.
[72] Karl J. Friston,et al. Statistical parametric maps in functional imaging: A general linear approach , 1994 .
[73] Leslie G. Ungerleider,et al. Distributed representation of objects in the human ventral visual pathway. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[74] C. Price,et al. A functional neuroimaging study of the variables that generate category-specific object processing differences. , 1999, Brain : a journal of neurology.
[75] Jemett L. Desmond,et al. Semantic encoding and retrieval in the left inferior prefrontal cortex: a functional MRI study of task difficulty and process specificity , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[76] D. Schacter,et al. Perceptual specificity in visual object priming: functional magnetic resonance imaging evidence for a laterality difference in fusiform cortex , 2001, Neuropsychologia.
[77] Leslie G. Ungerleider,et al. Selective attention to face identity and color studied with f MRI , 1997, Human brain mapping.
[78] K. Grill-Spector,et al. The dynamics of object-selective activation correlate with recognition performance in humans , 2000, Nature Neuroscience.
[79] Daniel L. Schacter,et al. Brain regions associated with retrieval of structurally coherent visual information , 1995, Nature.
[80] M. Bar,et al. Cortical Mechanisms Specific to Explicit Visual Object Recognition , 2001, Neuron.
[81] J. Driver. 6. What can visual neglect and extinction reveal about the extent of "preattentive" processing? , 1996 .
[82] M. Kiyosawa,et al. Functional neuroanatomy of visual object naming: a PET study , 1996, Graefe's Archive for Clinical and Experimental Ophthalmology.
[83] A. Treisman,et al. Voluntary Attention Modulates fMRI Activity in Human MT–MST , 1997, Neuron.
[84] Seong-Gi Kim,et al. Functional Magnetic Resonance Imaging of Visual Object Construction and Shape Discrimination: Relations among Task, Hemispheric Lateralization, and Gender , 2001, Journal of Cognitive Neuroscience.
[85] D. Perani,et al. Different neural systems for the recognition of animals and man‐made tools , 1995, Neuroreport.
[86] J. B. Demb,et al. Functional Magnetic Resonance Imaging of Semantic Memory Processes in the Frontal Lobes , 1996 .
[87] Stephen M. Rao,et al. Human Brain Language Areas Identified by Functional Magnetic Resonance Imaging , 1997, The Journal of Neuroscience.