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Interleaved lexical and audiovisual information can retune phoneme boundaries [<Journal>]
Ullas, Shruti [Verfasser]; Formisano, Elia [Verfasser]; Eisner, Frank [Verfasser].
DNB Subject Category Language
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2
Neural Correlates of Phonetic Adaptation as Induced by Lexical and Audiovisual Context ...
Ullas, Shruti; Hausfeld, Lars; Cutler, Anne. - : DataverseNL, 2020
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3
Audiovisual and lexical cues do not additively enhance perceptual adaptation
In: Psychon Bull Rev (2020)
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4
Interleaved lexical and audiovisual information can retune phoneme boundaries
Ullas, Shruti; Formisano, Elia; Eisner, Frank. - : U.S., Springer, 2020
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5
Neural correlates of phonetic adaptation as induced by lexical and audiovisual context
Hausfeld, Lars; Eisner, Frank; Ullas, Shruti. - : U.S., MIT Press, 2020
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6
Audiovisual and lexical cues do not additively enhance perceptual adaptation
Ullas, Shruti; Formisano, Elia; Eisner, Frank. - : U.S., Springer, 2020
BASE
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7
Interleaved lexical and audiovisual information can retune phoneme boundaries ...
Ullas, Shruti; Formisano, Elia; Eisner, Frank. - : DataverseNL, 2019
BASE
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8
Audiovisual and lexical cues do not additively enhance perceptual adaptation ...
Ullas, Shruti; Formisano, Elia. - : DataverseNL, 2019
BASE
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9
Cortical mechanisms of spatial hearing
BASE
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10
Reading-induced shifts of perceptual speech representations in auditory cortex
Bonte, Milene; Correia, Joao M.; Keetels, Mirjam. - : Nature Publishing Group UK, 2017
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11
Lexical and lip-reading information as sources of phonemic boundary recalibration
Ullas, Shruti; Eisner, Frank; Cutler, Anne (R12329). - : U.S., Society for the Neurobiology of Language, 2017
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12
Phase Coupling in a Cerebro-Cerebellar Network at 8-13 Hz during Reading
In: Cerebral Cortex (2015)
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13
Phase Coupling in a Cerebro-Cerebellar Network at 8-13 Hz during Reading
In: Cerebral Cortex (2015)
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14
The face in your voice–how audiovisual learning benefits vocal communication
Schall, Sonja. - : Humboldt-Universität zu Berlin, Mathematisch-Naturwissenschaftliche Fakultät II, 2014
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15
Brain-Based Translation: fMRI Decoding of Spoken Words in Bilinguals Reveals Language-Independent Semantic Representations in Anterior Temporal Lobe
Abstract: Bilinguals derive the same semantic concepts from equivalent, but acoustically different, words in their first and second languages. The neural mechanisms underlying the representation of language-independent concepts in the brain remain unclear. Here, we measured fMRI in human bilingual listeners and reveal that response patterns to individual spoken nouns in one language (e.g., “horse” in English) accurately predict the response patterns to equivalent nouns in the other language (e.g., “paard” in Dutch). Stimuli were four monosyllabic words in both languages, all from the category of “animal” nouns. For each word, pronunciations from three different speakers were included, allowing the investigation of speaker-independent representations of individual words. We used multivariate classifiers and a searchlight method to map the informative fMRI response patterns that enable decoding spoken words within languages (within-language discrimination) and across languages (across-language generalization). Response patterns discriminative of spoken words within language were distributed in multiple cortical regions, reflecting the complexity of the neural networks recruited during speech and language processing. Response patterns discriminative of spoken words across language were limited to localized clusters in the left anterior temporal lobe, the left angular gyrus and the posterior bank of the left postcentral gyrus, the right posterior superior temporal sulcus/superior temporal gyrus, the right medial anterior temporal lobe, the right anterior insula, and bilateral occipital cortex. These results corroborate the existence of “hub” regions organizing semantic-conceptual knowledge in abstract form at the fine-grained level of within semantic category discriminations.
Keyword: Articles
URL: http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6608172/
https://doi.org/10.1523/JNEUROSCI.1302-13.2014
http://www.ncbi.nlm.nih.gov/pubmed/24381294
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16
The Sensory Consequences of Speaking: Parametric Neural Cancellation during Speech in Auditory Cortex
Christoffels, Ingrid K.; van de Ven, Vincent; Waldorp, Lourens J.. - : Public Library of Science, 2011
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17
'Who' is saying 'what'? Brain-based decoding of human voice and speech
In: Science. - Washington, DC : AAAS, American Assoc. for the Advancement of Science 322 (2008) 5903, 970-973
BLLDB
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18
Phase Coupling in a Cerebro-Cerebellar Network at 8-13 Hz during Reading
Kujala, Jan; Pammer, Kristen; Cornelissen, Piers. - : Oxford University Press, 2007
BASE
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19
Phase Coupling in a Cerebro-Cerebellar Network at 8-13 Hz during Reading
Kujala, Jan; Pammer, Kristen; Cornelissen, Piers. - : Oxford University Press, 2006
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20
The Functional Neuroanatomy of Metrical Stress Evaluation of Perceived and Imagined Spoken Words
Aleman, André; Formisano, Elia; Koppenhagen, Heidi. - : Oxford University Press, 2005
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