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Neural processing of vision and language in kindergarten is associated with prereading skills and predicts future literacy
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In: ISSN: 1065-9471 ; EISSN: 1097-0193 ; Human Brain Mapping ; https://hal-amu.archives-ouvertes.fr/hal-03217489 ; Human Brain Mapping, Wiley, 2021, ⟨10.1002/hbm.25449⟩ (2021)
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Neural processing of vision and language in kindergarten is associated with prereading skills and predicts future literacy ...
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A model-guided dissociation between subcortical and cortical contributions to word recognition
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Do Words Stink? Neural Reuse as a Principle for Understanding Emotions in Reading
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In: ISSN: 0898-929X ; EISSN: 1530-8898 ; Journal of Cognitive Neuroscience ; https://hal-amu.archives-ouvertes.fr/hal-01909756 ; Journal of Cognitive Neuroscience, Massachusetts Institute of Technology Press (MIT Press), 2018, 30 (7), pp.1023 - 1032. ⟨10.1162/jocn_a_01268⟩ (2018)
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Neurofunctionally dissecting the reading system in children
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In: ISSN: 1878-9293 ; EISSN: 1878-9307 ; Developmental Cognitive Neuroscience ; https://hal-amu.archives-ouvertes.fr/hal-01910876 ; Developmental Cognitive Neuroscience, Elsevier, 2017, 27, pp.45 - 57. ⟨10.1016/j.dcn.2017.07.002⟩ (2017)
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Neurofunctionally dissecting the reading system in children ...
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Drifting through Basic Subprocesses of Reading: A Hierarchical Diffusion Model Analysis of Age Effects on Visual Word Recognition
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In: ISSN: 1664-1078 ; Frontiers in Psychology ; https://hal-amu.archives-ouvertes.fr/hal-01522738 ; Frontiers in Psychology, Frontiers, 2016, 7, pp.1863 - 1863. ⟨10.3389/fpsyg.2016.01863⟩ (2016)
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The Berlin Affective Word List for Children (kidBAWL) ... : Exploring Processing of Affective Lexical Semantics in the Visual and Auditory Modalities ...
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Drifting through Basic Subprocesses of Reading ... : A Hierarchical Diffusion Model Analysis of Age Effects on Visual Word Recognition ...
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Abstract:
Reading is one of the most popular leisure activities and it is routinely performed by most individuals even in old age. Successful reading enables older people to master and actively participate in everyday life and maintain functional independence. Yet, reading comprises a multitude of subprocesses and it is undoubtedly one of the most complex accomplishments of the human brain. Not surprisingly, findings of age-related effects on word recognition and reading have been partly contradictory and are often confined to only one of four central reading subprocesses, i.e., sublexical, orthographic, phonological and lexico-semantic processing. The aim of the present study was therefore to systematically investigate the impact of age on each of these subprocesses. A total of 1,807 participants (young, N = 384; old, N = 1,423) performed four decision tasks specifically designed to tap one of the subprocesses. To account for the behavioral heterogeneity in older adults, this subsample was split into high and low ...
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Keyword:
100 Philosophie und Psychologie150 Psychologie; aging; hierarchical diffusion modeling; letter identification; lexical decision; phonological decision; reading; semantic decision; visual word recognition
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URL: https://dx.doi.org/10.17169/refubium-24596 https://refubium.fu-berlin.de/handle/fub188/21301
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The Berlin Affective Word List for Children (kidBAWL): Exploring Processing of Affective Lexical Semantics in the Visual and Auditory Modalities
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Drifting through Basic Subprocesses of Reading: A Hierarchical Diffusion Model Analysis of Age Effects on Visual Word Recognition
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10 years of BAWLing into affective and aesthetic processes in reading: what are the echoes? ...
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The neural bases of the pseudohomophone effect : Phonological constraints on lexico-semantic access in reading
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In: Neuroscience ; 295 (2015). - S. 151-163. - ISSN 0306-4522. - eISSN 1873-7544 (2015)
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10 years of BAWLing into affective and aesthetic processes in reading: what are the echoes?
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Emotion processing in words: a test of the neural re-use hypothesis using surface and intracranial EEG
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Emotion processing in words: a test of the neural re-use hypothesis using surface and intracranial EEG
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Emotion processing in words: a test of the neural re-use hypothesis using surface and intracranial EEG
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