Motor speech encoding mechanisms probed through electrophysiological correlates of syllable complexity, speech modulation and impaired speech production

EEG Investigation of motor speech processes using the neural signature of speech modulation, articulatory complexity and patients suffering from two types of motor speech disorders during a delayed production task. Sample: 22 neurotypical speakers 7 patients suffering from Apraxia of Speech 4 patients suffering from Hypokinetic Dysarthria Note that patients' behavioral and electrophysiological data are available upon request to the authors Recording EEG system: Biosemi with 64 electrodes and a sampling frequency of 512 Hz

    Organizational unit
    NeuroPsychoLinguistics Lab
    Type
    Dataset
    DOI
    License
    Creative Commons Attribution 4.0 International
    Keywords
    Amplitudes, Apraxia of Speech, Dysarthria, EEG-ERP, Microstates, Single case analysis
Publication date07/07/2026
Retention date04/07/2036
accessLevelPublicAccess levelPublic
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Datacite metadata

    
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    <datacite:identifier identifierType="DOI">10.26037/yareta:tka3pnzb6rhkrol5wocbrtfrea</datacite:identifier>
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            <datacite:creatorName nameType="Personal">Sanders, Bryan Valentin</datacite:creatorName>
            <datacite:givenName>Bryan Valentin</datacite:givenName>
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            <datacite:creatorName nameType="Personal">Lancheros Pompeyo, Monica Patricia</datacite:creatorName>
            <datacite:givenName>Monica Patricia</datacite:givenName>
            <datacite:familyName>Lancheros Pompeyo</datacite:familyName>
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            <datacite:creatorName nameType="Personal">Laganaro, Marina</datacite:creatorName>
            <datacite:givenName>Marina</datacite:givenName>
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    <datacite:titles>
        <datacite:title>Motor speech encoding mechanisms probed through electrophysiological correlates of syllable complexity, speech modulation and impaired speech production</datacite:title>
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    <datacite:publisher publisherIdentifier="https://ror.org/01swzsf04" publisherIdentifierScheme="ROR" schemeURI="https://ror.org/">Université de Genève, Yareta</datacite:publisher>
    <datacite:publicationYear>2026</datacite:publicationYear>
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            <datacite:contributorName nameType="Organizational">[2d93d055-6341-4624-b16f-1acab39128b3] NeuroPsychoLinguistics Lab</datacite:contributorName>
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            <datacite:affiliation xsi:type="datacite:affiliation" affiliationIdentifier="https://ror.org/01swzsf04" affiliationIdentifierScheme="ROR" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">[UNIGE] Université de Genève</datacite:affiliation>
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            <datacite:contributorName nameType="Personal">Laganaro, Marina</datacite:contributorName>
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        <datacite:date dateType="Issued">2026-07-07T00:00:00Z</datacite:date>
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        <datacite:date dateType="Updated">2026-08-12T14:31:34.251986Z</datacite:date>
        <datacite:date dateType="Accepted">2026-08-12T14:31:33.817994655Z</datacite:date>
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        <datacite:description descriptionType="Abstract" xml:lang="fr">EEG Investigation of motor speech processes using the neural signature of speech modulation, articulatory complexity and patients suffering from two types of motor speech disorders during a delayed production task.

Sample:
22 neurotypical speakers
7 patients suffering from Apraxia of Speech
4 patients suffering from Hypokinetic Dysarthria

Note that patients' behavioral and electrophysiological data are available upon request to the authors

Recording EEG system: Biosemi with 64 electrodes and a sampling frequency of 512 Hz</datacite:description>
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    Metadata version
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    Retention expiration
    04/07/2036 00:00:00
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    12/08/2026 14:31:34
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    Motor speech encoding mechanisms probed through electrophysiological correlates of syllable complexity, speech modulation and impaired speech production
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    Motor speech encoding mechanisms probed through electrophysiological correlates of syllable complexity, speech modulation and impaired speech production
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    Motor speech encoding mechanisms probed through electrophysiological correlates of syllable complexity, speech modulation and impaired speech production
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