[1] | Hodges JR, Patterson K, Oxbury S, Funnel E (1992) Semantic dementia. Progressive fluent aphasia with temporal lobe atrophy. Brain 115: 1783–1806.
|
[2] | Snowden J, Goulding P, Neary D (1989) Semantic dementia: a form of circumscribed cerebral atrophy. Behav Neurol 2: 167–182.
|
[3] | Patterson K, Nestor PJ, Rogers TT (2007) Where do you know what you know? The representation of semantic knowledge in the human brain. Nat Rev Neurosci 8(12): 976–987.
|
[4] | Rogers TT, Lambon Ralph MA, Garrard P, Bozeat S, McClelland JL, Hodges JR, et al. (2004) Structure and deterioration of semantic memory: a neuropsychological and computational investigation. Psychol Rev 111(1): 205–235.
|
[5] | Snowden JS, Thompson JC, Neary D (2004) Knowledge of famous faces and names in semantic dementia. Brain 127(Pt4): 860–872.
|
[6] | Damasio H, Grabowski TJ, Tranel D, Hichwa RD, Damasio AR (1996) A neural basis for lexical retrieval. Nature 11 380(6574): 499–505.
|
[7] | Evans JJ, Heggs AJ, Antoun N, Hodges JR (1995) Progressive prosopagnosia associated with selective right temporal lobe atrophy. A new syndrome? Brain 118 (Pt1): 1–13.
|
[8] | Tyrrell PJ, Warrington EK, Frackowiak RS, Rossor MN (1990) Progressive degeneration of the right temporal lobe studied with positron emission tomography. J Neurol Neurosurg Psychiatry 53(12): 1046–1050.
|
[9] | Kitchener E, Hodges JR (1999) Impaired knowledge of famous people and events with intact autobiographical memory in a case of progressive right temporal lobe degeneration: implication for the organizazion of remote memory. Cog Neuropsychol 16(6): 589–607.
|
[10] | Seidenberg M, Griffith R, Sabsevitz D, Moran M, Haltiner A, Bell B, et al. (2002) Recognition and identification of famous faces in patients with unilateral temporal lobe epilepsy. Neuropsychologia 40(4): 446–456.
|
[11] | Thompson SA, Graham KS, Williams G, Patterson K, Kapur N, Hodges JR (2004) Dissociating person-specific from general semantic knowledge: roles of the left and right temporal lobes. Neuropsychologia 42(3): 359–370.
|
[12] | Hodges JR, Graham KS (1998) A reversal of the temporal gradient for famous person knowledge in semantic dementia: implications for the neural organisation of long-term memory. Neuropsychologia 36(8): 803–825.
|
[13] | Miceli G, Capasso R, Daniele A, Esposito T, Magarelli M, Tomaiuolo F (2000) Selective deficit for people's names following left temporal damage: an impairment of domain-specific conceptual knowledge. Cog Neuropsychol 17(6): 489–516.
|
[14] | Papagno C, Capitani E (2001) Slowly progressive aphasia: a four-year follow-up study. Neuropsychologia 39(7): 678–686.
|
[15] | Papagno C, Miracapillo C, Casarotti A, Romero Lauro LJ, Castellano A, Falini A, et al. (2011) What is the role of the uncinate fasciculus? Surgical removal and proper name retrieval. Brain 134(Pt2): 405–414.
|
[16] | Crutch SJ, Warrington EK (2004) The semantic organisation of proper nouns: the case of people and brand names. Neuropsychologia 42(5): 584–596.
|
[17] | Douville K, Woodard JL, Seidenberg M, Miller SK, Leveroni CL, Nielson KA, et al. (2005) Medial temporal lobe activity for recognition of recent and remote famous names: an event-related fMRI study. Neuropsychologia 43(5): 693–703.
|
[18] | Leveroni CL, Seidenberg M, Mayer AR, Mead LA, Binder JR, Rao SM (2000) Neural systems underlying the recognition of familiar and newly learned faces. J Neurosci 15 20(2): 878–886.
|
[19] | Nakamura K, Kawashima R, Sato N, Nakamura A, Sugiura M, Kato T, et al. (2000) Functional delineation of the human occipito-temporal areas related to face and scene processing. A PET study. Brain 123 (Pt9): 1903–1912.
|
[20] | Gorno-Tempini ML, Price CJ (2001) Identification of famous faces and buildings: a functional neuroimaging study of semantically unique items. Brain 124(Pt10): 2087–2097.
|
[21] | Kanwisher N, McDermott J, Chun MM (1997) The fusiform face area: a module in human extrastriate cortex specialized for face perception. J Neurosci 17(11): 4302–4311.
|
[22] | Gauthier I, Anderson AW, Tarr MJ, Skudlarski P, Gore JC (1997) Levels of categorization in visual recognition studied using functional magnetic resonance imaging. Curr Biol 7(9): 645–651.
|
[23] | Gorno-Tempini ML, Price CJ, Josephs O, Vandenberghe R, Cappa SF, Kapur N, et al. (1998) The neural systems sustaining face and proper-name processing. Brain 121 (Pt11): 2103–2118.
|
[24] | Gainotti G (2007) Different patterns of famous people recognition disorders in patients with right and left anterior temporal lesions: a systematic review. Neuropsychologia 2007 45(8): 1591–1607.
|
[25] | Warrington EK (1975) The selective impairment of semantic memory. Q J Exp Psychol 27: 635–657.
|
[26] | Warrington EK, Cipolotti L (1996) Word comprehension. The distinction between refractory and storage impairments. Brain 119 (Pt2): 611–625.
|
[27] | Warrington EK, Shallice T (1979) Semantic access dyslexia. Brain 102(1): 43–63.
|
[28] | Campanella F, Mondani M, Skrap M, Shallice T (2009) Semantic access dysphasia resulting from left temporal lobe tumours. Brain 132: 87–102.
|
[29] | Forde E, Humphreys G (1995) Refractory semantics in global aphasia: on semantic organisation and the access-storage distinction in neuropsychology. Memory 3(3–4): 265–307.
|
[30] | Crutch SJ, Warrington EK (2003) Spatial coding of semantic information: knowledge of country and city names depends on their geographical proximity. Brain 126(Pt8): 1821–1829.
|
[31] | Crutch SJ, Warrington EK (2004) A circumscribed refractory semantic access disorder: a verbal semantic impairment sparing visual semantics. Cog Neuropsychol 21: 299–315.
|
[32] | Crutch S, Warrington EK (2005) Gradients of semantic relatedness and their contrasting explanations in refractory access and storage semantic impairments. Cog Neuropsychol 22(7): 851–876.
|
[33] | Crutch SJ, Warrington EK (2005) Abstract and concrete concepts have structurally different representational frameworks. Brain 128(Pt3): 615–627.
|
[34] | Jefferies E, Baker SS, Doran M, Lambon Ralph M (2007) Refractory effects in stroke aphasia: a consequence of poor semantic control. Neuropsychologia 45(5): 1065–1079.
|
[35] | Pascual-Leone A, Bartres-Faz D, Keenan JP (1999) Transcranial magnetic stimulation: studying the brain-behaviour relationship by induction of ‘virtual lesions’. Phil Trans R Soc Lon B Biol Sci 1999 354(1387): 1229–1238.
|
[36] | Brambati SM, Myers D, Wilson A, Rankin KP, Allison SC, Rosen HJ, et al. (2006) The anatomy of category-specific object naming in neurodegenerative diseases. J Cog Neurosci 18(10): 1644–1653.
|
[37] | Campanella F, D′Agostini S, Skrap M, Shallice T (2010) Naming manipulable objects: anatomy of a category specific effect in left temporal tumours. Neuropsychologia 48(6): 1583–1597.
|
[38] | Lubrano V, Filleron T, Demonet JF, Roux FE (2012) Anatomical correlates for category specific naming of objects and actions: A brain stimulation mapping study. Hum Brain Map. DOI: 10.1002/hbm.22189.
|
[39] | Capitani E, Laiacona M, Mahon B, Caramazza A (2003) What are the facts of semantic category-specific deficits? A critical review of the clinical evidence. Cog Neuropsychol 20: 213–261.
|
[40] | Gainotti G (2000) What the locus of brain lesion tells us about the nature of the cognitive defect underlying category-specific disorders: a review. Cortex 36(4): 539–559.
|
[41] | Wassermann EM (1998) Risk and safety of repetitive transcranial magnetic stimulation: report and suggested guidelines from the International Workshop on the Safety of Repetitive Transcranial Magnetic Stimulation, June 5–7, 1996. Electroencephalogr Clin Neurophysiol 108(1): 1–16.
|
[42] | Briggs GG, Nebes RD (1975) Patterns of hand preference in a student population. Cortex 11(3): 230–238.
|
[43] | Bertinetto P, Burani C, Laudanna A, Marconi L, Ratti D, Rolando C. Corpus e Lessico di Frequenza dell'Italiano Scritto (CoLFIS) http://www.istc.cnr.it/grouppage/databas?es.Accessed: 2013 April 22 Ref Type: Internet Communication
|
[44] | Noble C (1954) The familiarity-frequency relationship. J Exp Psychol 47(1): 13–16.
|
[45] | Smith R, Dixon T (1971) Frequency and the judged familiarity of meaningful words. J Exp Psychol 88: 279–281.
|
[46] | Lambon Ralph MA, Pobric G, Jefferies E (2009) Conceptual knowledge is underpinned by the temporal pole bilaterally: convergent evidence from rTMS. Cer Cor 19(4): 832–838.
|
[47] | Pobric G, Jefferies E, Ralph MA (2007) Anterior temporal lobes mediate semantic representation: mimicking semantic dementia by using rTMS in normal participants. Proc Natl Ac Sci USA 104(50): 20137–20141.
|
[48] | Gauthier I, James TW, Curby KM, Tarr MJ (2003) The influence of conceptual knowledge on visual discrimination. Cogn Neuropsychol 20(3): 507–523.
|
[49] | Kerr NH, Winograd E (1982) Effects of contextual elaboration on face recognition. Mem Cognit 10(6): 603–609.
|
[50] | Gauthier I, Tarr MJ, Moylan J, Skudlarski P, Gore JC, Anderson AW (2000) The fusiform “face area” is part of a network that processes faces at the individual level. J Cogn Neurosci 12(3): 495–504.
|
[51] | Rogers TT, Hocking J, Noppeney U, Mechelli A, Gorno-Tempini ML, Patterson K, et al. (2006) Anterior temporal cortex and semantic memory: reconciling findings from neuropsychology and functional imaging. Cogn Affect Behav Neurosci 6(3): 201–213.
|
[52] | Gauthier I, Skudlarski P, Gore JC, Anderson AW (2000) Expertise for cars and birds recruits brain areas involved in face recognition. Nat Neurosci 3(2): 191–197.
|
[53] | Gainotti G (2012) The format of conceptual representations disrupted in semantic dementia: A position paper. Cortex 48(5): 521–529.
|
[54] | Mion M, Patterson K, Acosta-Carbonero J, Pengas G, Izquierdo-Garcia D, Hong Y, et al.. (2010) What the left and right anterior fusiform gyri tell us about semantic memory. Brain 133[11]: ,3256–3268.
|
[55] | Hinton G, Shallice T (1991) Lesioning an attractor network: Investigations of acquired dyslexia. Psychol Rev 98(1): 74–95.
|
[56] | Plaut D, Shallice T (1993) Deep dyslexia: A case study of connectionist neuropsychology. Cog Neuropsychol 10(5): 377–500.
|
[57] | Tyler LK, Stamatakis EA, Bright P, Acres K, Abdallah S, Rodd JM, et al. (2004) Processing objects at different levels of specificity. J Cog Neurosci 16(3): 351–362.
|
[58] | McNeil JE, Cipolotti L, Warrington EK (1994) The accessibility of proper names. Neuropsychologia 32(2): 193–208.
|
[59] | Semenza C, Zettin M (1988) Generating proper names: A case of selective inability. Cog Neuropsychol 5(711): 721.
|
[60] | Semenza C, Zettin M (1989) Evidence from aphasia for the role of proper names as pure referring expressions. Nature 7 342(6250): 678–679.
|
[61] | Gross CG (2002) Genealogy of the “grandmother cell”. The Neuroscientist 8(5): 512–518.
|
[62] | Quian Quiroga R, Kreiman G, Koch C, Fried I (2008) Sparse but not “grandmother-cell” coding in the medial temporal lobe. Trends cog sci 12(3): 87–91.
|
[63] | Quiroga RQ, Reddy L, Kreiman G, Koch C, Fried I (2005) Invariant visual representation by single neurons in the human brain. Nature 435(7045): 1102–1107.
|