Sensory and semantic category subdivisions within the anterior temporal lobes
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[1] M. L. Lambon Ralph,et al. Conceptual knowledge is underpinned by the temporal pole bilaterally: convergent evidence from rTMS. , 2009, Cerebral cortex.
[2] J. Prinz. Furnishing the Mind: Concepts and Their Perceptual Basis , 2004 .
[3] Michael Erb,et al. Audiovisual integration of emotional signals in voice and face: An event-related fMRI study , 2007, NeuroImage.
[4] K. Nakamura,et al. The primate temporal pole: its putative role in object recognition and memory , 1996, Behavioural Brain Research.
[5] Griselda J. Garrido,et al. The neural basis of human social values: evidence from functional MRI. , 2009, Cerebral cortex.
[6] E. Jefferies,et al. Anterior temporal lobes mediate semantic representation: Mimicking semantic dementia by using rTMS in normal participants , 2007, Proceedings of the National Academy of Sciences.
[7] R. Schultz,et al. Superior temporal activation in response to dynamic audio-visual emotional cues , 2009, Brain and Cognition.
[8] Tim D. Fryer,et al. Declarative memory impairments in Alzheimer's disease and semantic dementia , 2006, NeuroImage.
[9] Elizabeth Jefferies,et al. Semantic Processing in the Anterior Temporal Lobes: A Meta-analysis of the Functional Neuroimaging Literature , 2010, Journal of Cognitive Neuroscience.
[10] A. Mikami,et al. Visual response properties of single neurons in the temporal pole of behaving monkeys. , 1994, Journal of neurophysiology.
[11] H. Lüders,et al. Basal temporal language area. , 1991, Brain : a journal of neurology.
[12] W. K. Simmons,et al. The Selectivity and Functional Connectivity of the Anterior Temporal Lobes , 2009, Cerebral cortex.
[13] R P Lesser,et al. Characterization of the basal temporal language area in patients with left temporal lobe epilepsy , 1990, Neurology.
[14] Lars A. Ross,et al. What's unique about unique entities? An fMRI investigation of the semantics of famous faces and landmarks. , 2012, Cerebral cortex.
[15] F. Mohamed,et al. Comprar Bold Fmri. A Guide To Functional Imaging For Neuroscientists | Scott H. Faro | 9781441913289 | Springer , 2010 .
[16] Guy B. Williams,et al. What the left and right anterior fusiform gyri tell us about semantic memory. , 2010, Brain : a journal of neurology.
[17] Richard J. Binney,et al. The ventral and inferolateral aspects of the anterior temporal lobe are crucial in semantic memory: evidence from a novel direct comparison of distortion-corrected fMRI, rTMS, and semantic dementia. , 2010, Cerebral cortex.
[18] J. Grafman,et al. The neural basis of human moral cognition , 2005, Nature Reviews Neuroscience.
[19] John A. Detre,et al. Using perfusion fMRI to measure continuous changes in neural activity with learning , 2006, Brain and Cognition.
[20] Uta Noppeney,et al. Retrieval of abstract semantics , 2004, NeuroImage.
[21] Feroze B. Mohamed,et al. BOLD fMRI: A guide to functional imaging for neuroscientists , 2010 .
[22] G. McCarthy,et al. Language-related field potentials in the anterior-medial temporal lobe: II. Effects of word type and semantic priming , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[23] M. Mishkin,et al. Functional Mapping of the Primate Auditory System , 2003, Science.
[24] G. Vigliocco,et al. The representation of abstract words: why emotion matters. , 2011, Journal of experimental psychology. General.
[25] J. Gore,et al. A comparison of bound and unbound audio-visual information processing in the human cerebral cortex. , 2002, Brain research. Cognitive brain research.
[26] James L. McClelland,et al. The parallel distributed processing approach to semantic cognition , 2003, Nature Reviews Neuroscience.
[27] Guy B. Williams,et al. The human perirhinal cortex and semantic memory , 2004, The European journal of neuroscience.
[28] M. L. Lambon Ralph,et al. Category-Specific versus Category-General Semantic Impairment Induced by Transcranial Magnetic Stimulation , 2010, Current Biology.
[29] G. A. Calvert,et al. Hemodynamic studies of audio-visual interactions , 2003 .
[30] G. Gainotti. Different patterns of famous people recognition disorders in patients with right and left anterior temporal lesions: A systematic review , 2007, Neuropsychologia.
[31] C. Frith,et al. Rapid Response Subject Collections , 2022 .
[32] I. Olson,et al. The Enigmatic temporal pole: a review of findings on social and emotional processing. , 2007, Brain : a journal of neurology.
[33] Daniel Tranel,et al. The left temporal pole is important for retrieving words for unique concrete entities , 2009, Aphasiology.
[34] W. Singer,et al. Functional imaging of mirror and inverse reading reveals separate coactivated networks for oculomotion and spatial transformations , 1998, Neuroreport.
[35] H. Kirshner,et al. Aphasia secondary to partial status epilepticus of the basal temporal language area , 1995, Neurology.
[36] Matthew H. Davis,et al. Susceptibility-Induced Loss of Signal: Comparing PET and fMRI on a Semantic Task , 2000, NeuroImage.
[37] Robert T. Knight,et al. Superior Temporal SulcusIt's My Area: Or Is It? , 2008, Journal of Cognitive Neuroscience.
[38] William W. Graves,et al. Where is the semantic system? A critical review and meta-analysis of 120 functional neuroimaging studies. , 2009, Cerebral cortex.
[39] R. Adolphs,et al. Annals of the New York Academy of Sciences What Does the Amygdala Contribute to Social Cognition? , 2022 .
[40] G. Ojemann,et al. Category-specific naming and recognition deficits in temporal lobe epilepsy surgical patients , 2008, Neuropsychologia.
[41] R. Adolphs,et al. Neural systems behind word and concept retrieval , 2004, Cognition.
[42] K. Saleem,et al. Differential connections of the perirhinal and parahippocampal cortex with the orbital and medial prefrontal networks in macaque monkeys , 2005, The Journal of comparative neurology.
[43] Hideki Kondo,et al. Differential connections of the temporal pole with the orbital and medial prefrontal networks in macaque monkeys , 2003, The Journal of comparative neurology.
[44] W. K. Simmons,et al. The anterior temporal lobes and the functional architecture of semantic memory , 2009, Journal of the International Neuropsychological Society.
[45] T. Schormann,et al. Activation Reduction in Anterior Temporal Cortices during Repeated Recognition of Faces of Personal Acquaintances , 2001, NeuroImage.
[46] A. Giraud,et al. Implicit Multisensory Associations Influence Voice Recognition , 2006, PLoS biology.
[47] M. Mesulam,et al. Neural inputs into the temporopolar cortex of the rhesus monkey , 1987, The Journal of comparative neurology.
[48] C. Frith,et al. Development and neurophysiology of mentalizing. , 2003, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[49] Jeffrey R Binder,et al. Human brain regions involved in recognizing environmental sounds. , 2004, Cerebral cortex.
[50] Yoko Mano,et al. Beyond the Memory Mechanism: Person-selective and Nonselective Processes in Recognition of Personally Familiar Faces , 2011, Journal of Cognitive Neuroscience.
[51] Song-Lin Ding,et al. Parcellation of human temporal polar cortex: A combined analysis of multiple cytoarchitectonic, chemoarchitectonic, and pathological markers , 2009, The Journal of comparative neurology.
[52] F. Mansilla,et al. The Human Parahippocampal Region: I. Temporal Pole Cytoarchitectonic and MRI Correlation , 2010, Cerebral cortex.
[53] M. L. Lambon Ralph,et al. The role of the anterior temporal lobes in the comprehension of concrete and abstract words: rTMS evidence , 2009, Cortex.
[54] D. Plaut. Graded modality-specific specialisation in semantics: A computational account of optic aphasia , 2002, Cognitive neuropsychology.
[55] T. Rogers,et al. Where do you know what you know? The representation of semantic knowledge in the human brain , 2007, Nature Reviews Neuroscience.
[56] J. Hodges,et al. Semantic dementia: a unique clinicopathological syndrome , 2007, The Lancet Neurology.
[57] Hanna Damasio,et al. Naming the Same Entities from Visual or from Auditory Stimulation Engages Similar Regions of Left Inferotemporal Cortices , 2005, Journal of Cognitive Neuroscience.
[58] Emmanuel A Stamatakis,et al. Crossmodal integration of object features: voxel-based correlations in brain-damaged patients. , 2009, Brain : a journal of neurology.
[59] John J. Foxe,et al. Multisensory visual-auditory object recognition in humans: a high-density electrical mapping study. , 2004, Cerebral cortex.
[60] H. Lüders,et al. Quantitative Comparison of Language Deficits Produced by Extraoperative Electrical Stimulation of Broca's, Wernicke's, and Basal Temporal Language Areas , 1996, Epilepsia.
[61] T. Rogers,et al. Anterior temporal cortex and semantic memory: Reconciling findings from neuropsychology and functional imaging , 2006, Cognitive, affective & behavioral neuroscience.
[62] R P Lesser,et al. Basal temporal language area demonstrated by electrical stimulation , 1986, Neurology.
[63] Jordan Grafman,et al. Social concepts are represented in the superior anterior temporal cortex , 2007, Proceedings of the National Academy of Sciences.
[64] Isabelle Peretz,et al. Auditory recognition expertise and domain specificity , 2008, Brain Research.
[65] Emily J. Mayberry,et al. Coherent concepts are computed in the anterior temporal lobes , 2010, Proceedings of the National Academy of Sciences.
[66] T. Allison,et al. Word recognition in the human inferior temporal lobe , 1994, Nature.
[67] A. Damasio,et al. A role for left temporal pole in the retrieval of words for unique entities , 2001, Human brain mapping.
[68] Kurt E. Weaver,et al. Mapping anterior temporal lobe language areas with fMRI: A multicenter normative study , 2011, NeuroImage.
[69] G. McCarthy,et al. Language-related field potentials in the anterior-medial temporal lobe: I. Intracranial distribution and neural generators , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[70] Ingrid R. Olson,et al. Social cognition and the anterior temporal lobes , 2010, NeuroImage.