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White matter microstructure throughout the brain correlates with visual imagery in grapheme-color synesthesia.

, , , , , and . NeuroImage, (2014)

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Processing the Trees and the Forest during Initial Stages of Face Perception: Electrophysiological Evidence., , , , and . J. Cognitive Neuroscience, 18 (8): 1406-1421 (2006)Synesthesia and the binding problem, and . chapter 6, page 90--107. Oxford University Press, New York, (2005)Coming Unbound: Disrupting Automatic Integration of Synesthetic Color and Graphemes by Transcranial Magnetic Stimulation of the Right Parietal Lobe., , , and . J. Cognitive Neuroscience, 18 (9): 1570-1576 (2006)Cross-modal Interactions in Time and Space: Auditory Influence on Visual Attention in Hemispatial Neglect., and . J. Cognitive Neuroscience, 18 (8): 1368-1379 (2006)Functional Plasticity in Ventral Temporal Cortex following Cognitive Rehabilitation of a Congenital Prosopagnosic., , , and . J. Cogn. Neurosci., 19 (11): 1790-1802 (2007)Isolating human brain functional connectivity associated with a specific cognitive process., , , , and . Human Vision and Electronic Imaging, volume 7527 of SPIE Proceedings, page 75270. SPIE, (2010)White matter microstructure throughout the brain correlates with visual imagery in grapheme-color synesthesia., , , , , and . NeuroImage, (2014)Attenuating illusory binding with TMS of the right parietal cortex., , and . NeuroImage, 35 (3): 1247-1255 (2007)Too Many Trees to See the Forest: Performance, Event-related Potential, and Functional Magnetic Resonance Imaging Manifestations of Integrative Congenital Prosopagnosia., , , and . J. Cogn. Neurosci., 19 (1): 132-146 (2007)When Blue is Larger than Red: Colors Influence Numerical Cognition in Synesthesia., , , , , and . J. Cognitive Neuroscience, 17 (11): 1766-1773 (2005)