Identification of spatially filtered stimuli as function of the semantic category.
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[1] David Marr,et al. VISION A Computational Investigation into the Human Representation and Processing of Visual Information , 2009 .
[2] G. Sandini,et al. The Role of High Spatial Frequencies in Face Perception , 1983, Perception.
[3] R. Berndt,et al. Category-specific naming deficit following cerebral infarction , 1985, Nature.
[4] M C Morrone,et al. Recognition of Positive and Negative Bandpass-Filtered Images , 1986, Perception.
[5] G W Humphreys,et al. The Effects of Surface Detail on Object Categorization and Naming , 1989, The Quarterly journal of experimental psychology. A, Human experimental psychology.
[6] A. Damasio. Category-related recognition defects as a clue to the neural substrates of knowledge , 1990, Trends in Neurosciences.
[7] Denis G. Pelli,et al. The visual filter mediating letter identification , 1994, Nature.
[8] Rosaleen A. McCarthy,et al. Multiple meaning systems in the brain: A case for visual semantics , 1994, Neuropsychologia.
[9] D. Perani,et al. Different neural systems for the recognition of animals and man‐made tools , 1995, Neuroreport.
[10] S. Kosslyn,et al. Wet Mind: The New Cognitive Neuroscience , 1995 .
[11] Gordon E. Legge,et al. Human efficiency for recognizing and detecting low-pass filtered objects , 1995, Vision Research.
[12] J R Lishman,et al. Role of coarse and fine spatial information in face and object processing. , 1996, Journal of experimental psychology. Human perception and performance.
[13] Leslie G. Ungerleider,et al. Neural correlates of category-specific knowledge , 1996, Nature.
[14] H. Hughes,et al. Global Precedence, Spatial Frequency Channels, and the Statistics of Natural Images , 1996, Journal of Cognitive Neuroscience.
[15] A. Oliva,et al. Flexible, Diagnosticity-Driven, Rather Than Fixed, Perceptually Determined Scale Selection in Scene and Face Recognition , 1997, Perception.
[16] Luciano Mecacci,et al. Chapter 2 – Temporal Frequency Processing , 1997 .
[17] S. Christman. Cerebral asymmetries in sensory and perceptual processing , 1997 .
[18] Stephen A. Engel,et al. Linearity across spatial frequency in object recognition , 1998, Vision Research.
[19] M. Kutas,et al. The covert interplay between perception and memory: event-related potential evidence. , 1998, Electroencephalography and clinical neurophysiology.
[20] A. Caramazza,et al. Domain-Specific Knowledge Systems in the Brain: The Animate-Inanimate Distinction , 1998, Journal of Cognitive Neuroscience.
[21] M E Bellemann,et al. Functional magnetic resonance imaging of category-specific cortical activation: evidence for semantic maps. , 1998, Brain research. Cognitive brain research.
[22] J. Haxby,et al. Attribute-based neural substrates in temporal cortex for perceiving and knowing about objects , 1999, Nature Neuroscience.
[23] P. Bennett,et al. Identification of band-pass filtered letters and faces by human and ideal observers , 1999, Vision Research.
[24] L. Tyler,et al. A progressive category-specific semantic deficit for non-living things , 2000, Neuropsychologia.
[25] Manila Vannucci,et al. Category Effects on the Processing of Plane-Rotated Objects , 2000, Perception.
[26] L. K. Tyler,et al. Conceptual Structure and the Structure of Concepts: A Distributed Account of Category-Specific Deficits , 2000, Brain and Language.
[27] M. Kutas,et al. Overt and covert identification of fragmented objects inferred from performance and electrophysiological measures. , 2000, Journal of experimental psychology. General.
[28] M. Kiefer,et al. Perceptual and semantic sources of category-specific effects: Event-related potentials during picture and word categorization , 2001, Memory & cognition.
[29] Alex Martin,et al. Semantic memory and the brain: structure and processes , 2001, Current Opinion in Neurobiology.
[30] Manila Vannucci,et al. Drawing and identifying objects in relation to semantic category and handedness , 2002, Neuropsychologia.