Knowing how to do it or doing it? A double dissociation between tool-gesture production and tool-gesture knowledge
Tài liệu tham khảo
Almeida, 2018, Visual and visuomotor processing of hands and tools as a case study of cross talk between the dorsal and ventral streams, Cognitive Neuropsychology, 35, 1
Almeida, 2013, Tool manipulation knowledge is retrieved by way of the ventral visual object processing pathway, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 49, 2334, 10.1016/j.cortex.2013.05.004
Almeida, 2017, Polarity-specific transcranial direct current stimulation effects on object-selective neural responses in the inferior parietal lobe, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 94, 176, 10.1016/j.cortex.2017.07.001
Amaral, 2021, Overlapping but distinct: Distal connectivity dissociates hand and tool processing networks, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 140, 1, 10.1016/j.cortex.2021.03.011
Amunts, 2015, Architectonic mapping of the human brain beyond brodmann, Neuron, 88, 1086, 10.1016/j.neuron.2015.12.001
Barsalou, 2008, Grounded cognition, Annual Review of Psychology, 59, 617, 10.1146/annurev.psych.59.103006.093639
Bartolo, 2007, Relationship between object-related gestures and the fractionated object knowledge system, Behavioural Neurology, 18, 143, 10.1155/2007/241670
Bedny, 2011, Perception, action, and word meanings in the human brain: The case from action verbs, Annals of the New York Academy of Sciences, 1224, 81, 10.1111/j.1749-6632.2011.06013.x
Bergström, 2021, Tool-hand invariant grasp-type affordance cross-decoded from left posterior parietal cortex, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 139, 152, 10.1016/j.cortex.2021.03.004
Binkofski, 2013, Two action systems in the human brain, Brain and Language, 127, 222, 10.1016/j.bandl.2012.07.007
Boronat, 2005, Distinctions between manipulation and function knowledge of objects: Evidence from functional magnetic resonance imaging, Cognitive Brain Research, 23, 361, 10.1016/j.cogbrainres.2004.11.001
Buchwald, 2018, Decoding brain states for planning functional grasps of tools: A functional magnetic resonance imaging multivoxel pattern analysis study, Journal of the International Neuropsychological Society : JINS, 24, 1013, 10.1017/S1355617718000590
Buxbaum, 2001, Ideomotor apraxia: A call to action, Neurocase, 7, 445, 10.1093/neucas/7.6.445
Buxbaum, 2000, The role of the dynamic body schema in praxis: Evidence from primary progressive apraxia, Brain and Cognition, 44, 166, 10.1006/brcg.2000.1227
Buxbaum, 2010, Action knowledge, visuomotor activation, and embodiment in the two action systems, Annals of the New York Academy of Sciences, 1191, 201, 10.1111/j.1749-6632.2010.05447.x
Buxbaum, 2002, Knowledge of object manipulation and object function: Dissociations in apraxic and nonapraxic subjects, Brain and Language, 82, 179, 10.1016/S0093-934X(02)00014-7
Buxbaum, 2000, Function and manipulation tool knowledge in apraxia: Knowing ‘what for’ but not ‘how, Neurocase, 6, 83
Canessa, 2008, The different neural correlates of action and functional knowledge in semantic memory: An fMRI study, Cerebral Cortex, 18, 740, 10.1093/cercor/bhm110
Capitani, 2003, What are the facts of semantic category-specific deficits? A critical review of the clinical evidence, Cognitive Neuropsychology, 20, 213, 10.1080/02643290244000266
Caramazza, 1988, The case for single-patient studies, Cognitive Neuropsychology, 5, 517, 10.1080/02643298808253271
Chao, 1999, Attribute-based neural substrates in temporal cortex for perceiving and knowing about objects, Nature Neuroscience, 2, 913, 10.1038/13217
Collette, 2016, The development of object function and manipulation knowledge: Evidence from a semantic priming study, Frontiers in Psychology, 7, 1
Crawford, 2002, Investigation of the single case in neuropsychology: Confidence limits on the abnormality of test scores and test score differences, Neuropsychologia, 40, 1196, 10.1016/S0028-3932(01)00224-X
Crawford, 2010, Point and interval estimates of effect sizes for the case-controls design in neuropsychology: Rationale, methods, implementations, and proposed reporting standards, Cognitive Neuropsychology, 27, 245, 10.1080/02643294.2010.513967
Crawford, 2010, Inferential methods for comparing two single cases, Cognitive Neuropsychology, 27, 377, 10.1080/02643294.2011.559158
Cubelli, 2000, Cognition in action: Testing a model of limb apraxia, Brain and Cognition, 44, 144, 10.1006/brcg.2000.1226
De Bellis, 2016, Observing functional actions affects semantic processing of tools: Evidence of a motor-to-semantic priming, Experimental Brain Research, 234, 1, 10.1007/s00221-015-4432-4
Desikan, 2006, An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest, Neuroimage, 31, 968, 10.1016/j.neuroimage.2006.01.021
Druks, 2000
Fischl, 2000, Measuring the thickness of the human cerebral cortex from magnetic resonance images, Proceedings of the National Academy of Sciences of the United States of America, 97, 11050, 10.1073/pnas.200033797
Fleming, 2010, Bilateral parietal cortex function during motor imagery, Experimental Brain Research, 201, 499, 10.1007/s00221-009-2062-4
Folstein, 1975, Mini-mental state: A practical method for grading the cognitive state of patients for the clinician, Journal of Psychiatry Research, 12, 189, 10.1016/0022-3956(75)90026-6
Freitas, 2015, The relevance of sociodemographic and health variables on MMSE normative data, Applied Neuropsychology:Adult, 22, 37
Freitas, 2014, MoCA : Pontos de Corte MoCA : Pontos de Corte, Sinapse, 14, 18
Gallese, 2005, The brain's concepts: The role of the sensory-motor system in conceptual knowledge, Cognitive Neuropsychology, 22, 455, 10.1080/02643290442000310
Gallivan, 2013, Where one hand meets the other: Limb-specific and action-dependent movement plans decoded from preparatory signals in single human frontoparietal brain areas, Journal of Neuroscience, 33, 1991, 10.1523/JNEUROSCI.0541-12.2013
Garcea, 2019, Domain-specific diaschisis: Lesions to parietal action areas modulate neural responses to tools in the ventral stream, Cerebral Cortex, 29, 3168, 10.1093/cercor/bhy183
Garcea, 2013, Preserved tool knowledge in the context of impaired action knowledge: Implications for models of semantic memory, Frontiers in Human Neuroscience, 7, 1
Garcea, 2016, Resilience to the contralateral visual field bias as a window into object representations, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 81, 14, 10.1016/j.cortex.2016.04.006
Garcea, 2012, What is in a tool concept? Dissociating manipulation knowledge from function knowledge, Memory & Cognition, 40, 1303, 10.3758/s13421-012-0236-y
Goldenberg, 2009, Apraxia and the parietal lobes, Neuropsychologia, 47, 1449, 10.1016/j.neuropsychologia.2008.07.014
Goldenberg, 2007, Pantomime of tool use depends on integrity of left inferior frontal cortex, Cerebral Cortex, 17, 2769, 10.1093/cercor/bhm004
Goldenberg, 2009, The neural basis of tool use, Brain: a Journal of Neurology, 132, 1645, 10.1093/brain/awp080
Goodale, 1992, Separate visual pathways for perception and action, Trends in Cognitive Sciences, 15, 20
Guerreiro, 1998
Guerreiro, 1994, Adaptação à população portuguesa da tradução do Mini Mental State Examination [Adaptation of the Mini Mental State Examination translation for the Portuguese population], Revista Portuguesa de Neurologia, 1, 9
Halsband, 2001, Recognition and imitation of pantomimed motor acts after unilateral parietal and premotor lesions: A perspective on apraxia, Neuropsychologia, 39, 200, 10.1016/S0028-3932(00)00088-9
Hanakawa, 2003, Functional properties of brain areas associated with motor execution and imagery, Journal of Neurophysiology, 89, 989, 10.1152/jn.00132.2002
Heilman, 1986, Apraxia after a superior parietal lesion, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 22, 141, 10.1016/S0010-9452(86)80038-7
Hoeren, 2014, Neural bases of imitation and pantomime in acute stroke patients: Distinct streams for praxis, Brain: a Journal of Neurology, 137, 2796, 10.1093/brain/awu203
Howard, 1992
Ishibashi, 2018, Facilitation of function and manipulation knowledge of tools using transcranial direct current stimulation (tDCS), Frontiers in Integrative Neuroscience, 11, 1, 10.3389/fnint.2017.00037
Ishibashi, 2016, The neural network for tool-related cognition: An activation likelihood estimation meta-analysis of 70 neuroimaging contrasts, Cognitive Neuropsychology, 33, 241, 10.1080/02643294.2016.1188798
Ishibashi, 2011, Different roles of lateral anterior temporal lobe and inferior parietal lobule in coding function and manipulation tool knowledge: Evidence from an rTMS study, Neuropsychologia, 49, 1128, 10.1016/j.neuropsychologia.2011.01.004
Jax, 2014, Conceptual- and production-related predictors of pantomimed tool use deficits in apraxia, Neuropsychologia, 62, 194, 10.1016/j.neuropsychologia.2014.07.014
Jonin, 2018, Superior explicit memory despite severe developmental amnesia: In-depth case study and neural correlates, Hippocampus, 28, 867, 10.1002/hipo.23010
Kable, 2005, Conceptual representations of action in the lateral temporal cortex, Journal of Cognitive Neuroscience, 17, 1855, 10.1162/089892905775008625
Kellenbach, 2003, Actions speak louder than functions: The importance of manipulability and action in tool representation, Journal of Cognitive Neuroscience, 15, 30, 10.1162/089892903321107800
Kemmerer, 2015, Are the motor features of verb meanings represented in the precentral motor cortices? Yes, but within the context of a flexible, multilevel architecture for conceptual knowledge, Psychonomic Bulletin & Review, 22, 1068, 10.3758/s13423-014-0784-1
Kiefer, 2012, Conceptual representations in mind and brain: Theoretical developments, current evidence and future directions, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 48, 805, 10.1016/j.cortex.2011.04.006
Kristensen, 2016, Temporal frequency tuning reveals interactions between the dorsal and ventral visual streams, Journal of Cognitive Neuroscience, 28, 1295, 10.1162/jocn_a_00969
Lee, 2019, Action at a distance on object-related ventral temporal representations, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 117, 157, 10.1016/j.cortex.2019.02.018
Lewis, 2006, Cortical networks related to human use of tools, The Neuroscientist: a Review Journal Bringing Neurobiology, Neurology and Psychiatry, 12, 211, 10.1177/1073858406288327
Mahon, 2005, The orchestration of the sensory-motor systems: Clues from Neuropsychology, Cognitive Neuropsychology, 22, 480, 10.1080/02643290442000446
Mahon, 2013, Spatial frequency tuning reveals visuomotor interactions between the dorsal and ventral visual systems, Journal of Cognitive Neuroscience, 25, 862, 10.1162/jocn_a_00370
Mahon, 2007, Action-related properties shape object representations in the ventral stream, Neuron, 55, 507, 10.1016/j.neuron.2007.07.011
Marques, 2013, Structural processing and category-specific deficits, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 49, 266, 10.1016/j.cortex.2011.10.006
Martin, 2007, The representation of object concepts in the brain, Annual Review of Psychology, 58, 25, 10.1146/annurev.psych.57.102904.190143
Meteyard, 2012, Coming of age: A review of embodiment and the neuroscience of semantics, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 48, 788, 10.1016/j.cortex.2010.11.002
Myung, 2006, Playing on the typewriter, typing on the piano: Manipulation knowledge of objects, Cognition, 98, 223, 10.1016/j.cognition.2004.11.010
Myung, 2010, Impaired access to manipulation features in Apraxia: Evidence from eyetracking and semantic judgment tasks, Brain and Language, 112, 101, 10.1016/j.bandl.2009.12.003
Nasreddine, 2005, The montreal cognitive assessment, MoCA: A brief screening tool for mild cognitive impairment, Journal of the American Geriatrics Society, 53, 695, 10.1111/j.1532-5415.2005.53221.x
Negri, 2007, What is the role of motor simulation in action and object recognition? Evidence from apraxia, Cognitive Neuropsychology, 24, 795, 10.1080/02643290701707412
Ochipa, 1994, Conduction apraxia, Journal of Neurology, Neurosurgery and Psychiatry, 57, 1241, 10.1136/jnnp.57.10.1241
Osiurak, 2016, Tool use and affordance: Manipulation-based versus reasoning-based approaches, Psychological Review, 123, 534, 10.1037/rev0000027
Osiurak, 2020, Technition: When tools come out of the closet, Perspectives on Psychological Science, 15, 880, 10.1177/1745691620902145
Papeo, 2010, Action performance and action-word understanding: Evidence of double dissociations in left-damaged patients, Cognitive Neuropsychology, 27, 428, 10.1080/02643294.2011.570326
Papeo, 2013, Lexical and gestural symbols in left-damaged patients, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 49, 1668, 10.1016/j.cortex.2012.09.003
Peeters, 2013, Functional properties of the left parietal tool use region, Neuroimage, 78, 83, 10.1016/j.neuroimage.2013.04.023
Pilgramm, 2016, Motor imagery of hand actions: Decoding the content of motor imagery from brain activity in frontal and parietal motor areas, Human Brain Mapping, 37, 81, 10.1002/hbm.23015
Power, 2010, Florida apraxia battery-extended and revised sydney (FABERS): Design, description, and a healthy control sample, Journal of Clinical and Experimental Neuropsychology, 32, 1, 10.1080/13803390902791646
Randerath, 2011, From pantomime to actual use: How affordances can facilitate actual tool-use, Neuropsychologia, 49, 2410, 10.1016/j.neuropsychologia.2011.04.017
Rapcsak, 1995, Progressive ideomotor apraxia - evidence for a selective impairment of the action production system, Brain and Cognition, 27, 213, 10.1006/brcg.1995.1018
Riccardi, 2020, Degradation of praxis brain networks and impaired comprehension of manipulable nouns in stroke, Journal of Cognitive Neuroscience, 32, 467, 10.1162/jocn_a_01495
Rizzolatti, 2001, Neurophysiological mechanisms underlying the understanding and imitation of action, Nature Reviews Neuroscience, 2, 661, 10.1038/35090060
Rizzolatti, 2003, Two different streams form the dorsal visual system: Anatomy and functions, Experimental Brain Research, 153, 146, 10.1007/s00221-003-1588-0
Rizzolatti, 2010, The functional role of the parieto-frontal mirror circuit: Interpretations and misinterpretations, Nature Reviews Neuroscience, 11, 264, 10.1038/nrn2805
Ruotolo, 2019, Activation of manipulation and function knowledge, Journal of Experimental Psychology: Human Perception and Performance, 1
Ruttorf, 2019, Transcranial direct current stimulation alters functional network structure in humans: A graph theoretical analysis, IEEE Transactions on Medical Imaging, 38, 2829, 10.1109/TMI.2019.2915206
Schulz, 2018, Action affordances and visuo-spatial complexity in motor imagery : An fMRI study, Brain and Cognition, 124, 37, 10.1016/j.bandc.2018.03.012
Simões, 2008
Snodgrass, 1980, A standardized set of 260 Pictures : Norms for name agreement, image agreement, familiarity, and visual complexity, J. Exp. Psychol. Hum. Learn. Mem., 6, 174, 10.1037/0278-7393.6.2.174
Vannuscorps, 2014, Is motor knowledge part and parcel of the concepts of manipulable artifacts? Clues from a case of upper limb aplasia, Brain and Cognition, 84, 132, 10.1016/j.bandc.2013.11.009
Vannuscorps, 2016, Typical action perception and interpretation without motor simulation, Proceedings of the National Academy of Sciences of the United States of America, 113, 86, 10.1073/pnas.1516978112
Walbrin, 2021, High-level representations in human occipito-temporal cortex are indexed by distal connectivity, Journal of Neuroscience, 10.1523/JNEUROSCI.2857-20.2021
Wallace, 2009, A case study of a multiply talented savant with an autism spectrum disorder: Neuropsychological functioning and brain morphometry, Philosophical Transactions of the Royal Society B: Biological Sciences, 364, 1425, 10.1098/rstb.2008.0330
Watson, 2015, A distributed network critical for selecting among tool-directed actions, Cortex; a Journal Devoted To the Study of the Nervous System and Behavior, 65, 65, 10.1016/j.cortex.2015.01.007
Wolbers, 2003, Contralateral coding of imagined body parts in the superior parietal lobe, Cerebral Cortex, 13, 392, 10.1093/cercor/13.4.392
Zabicki, 2017, Imagined and executed actions in the human motor system: Testing neural similarity between execution and imagery of actions with a multivariate approach, Cerebral Cortex, 27, 4523