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Imagined speech can be decoded from low- and cross-frequency intracranial EEG features
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In: ISSN: 2041-1723 ; Nature communications, Vol. 13, No 1 (2022) P. 48 (2022)
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Imagined speech can be decoded from low- and cross-frequency intracranial EEG features
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In: Nat Commun (2022)
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Investigating the Link Between Linguistic and Non-Linguistic Cognitive Control in Bilinguals Using Laplacian-Transformed Event Related Potentials
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In: Neurobiol Lang (Camb) (2021)
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Using Coherence-based spectro-spatial filters for stimulus features prediction from electro-corticographic recordings
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In: ISSN: 2045-2322 ; Scientific Reports, Vol. 10, No 1 (2020) P. 7637 (2020)
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Using Coherence-based spectro-spatial filters for stimulus features prediction from electro-corticographic recordings
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In: Sci Rep (2020)
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Decoding Inner Speech Using Electrocorticography: Progress and Challenges Toward a Speech Prosthesis
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The use of intracranial recordings to decode human language: Challenges and opportunities
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In: http://infoscience.epfl.ch/record/229907 (2017)
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Spatiotemporal dynamics of word retrieval in speech production revealed by cortical high-frequency band activity. ...
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Spatiotemporal dynamics of word retrieval in speech production revealed by cortical high-frequency band activity.
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Lexical selection with competing distractors: Evidence from left temporal lobe lesions
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Spatiotemporal dynamics of word retrieval in speech production revealed by cortical high-frequency band activity
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Rapid tuning shifts in human auditory cortex enhance speech intelligibility.
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In: Nature communications, vol 7, iss 1 (2016)
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Rapid tuning shifts in human auditory cortex enhance speech intelligibility.
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In: Nature communications, vol 7, iss 1 (2016)
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Word pair classification during imagined speech using direct brain recordings
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In: http://infoscience.epfl.ch/record/218946 (2016)
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The use of intracranial recordings to decode human language: challenges and opportunities
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In: Brain Lang (2016)
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Word pair classification during imagined speech using direct brain recordings
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18 |
Rapid tuning shifts in human auditory cortex enhance speech intelligibility
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