Thinking soap But Speaking ‘oaps’. The Sound Preparation Period: Backward Calculation From Utterance to Muscle Innervation

<p>In this article’s model—on speech and on speech errors, dyscoordinations, and disorders—, the time-course from the muscle innervation impetuses to the utterance of sounds as intended for canonical speech sound sequences is calculated backwar...

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Main Author: Nora Wiedenmann
Format: Article
Language:English
Published: EduSoft publishing 2010-04-01
Series:Brain: Broad Research in Artificial Intelligence and Neuroscience
Subjects:
Online Access:http://brain.edusoft.ro/index.php/brain/article/view/45
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spelling doaj-cf4c367c60b7424ebc2abd0269d9b2232020-11-24T23:48:17ZengEduSoft publishingBrain: Broad Research in Artificial Intelligence and Neuroscience2067-39572010-04-01126488Thinking soap But Speaking ‘oaps’. The Sound Preparation Period: Backward Calculation From Utterance to Muscle InnervationNora Wiedenmann<p>In this article’s model—on speech and on speech errors, dyscoordinations, and disorders—, the time-course from the muscle innervation impetuses to the utterance of sounds as intended for canonical speech sound sequences is calculated backward. This time-course is shown as the sum of all the known physiological durations of speech sounds and speech gestures that are necessary to produce an utterance. The model introduces two internal clocks, based on positive or negative factors, representing certain physiologically-based time-courses during the sound preparation period (Lautvorspann). The use of these internal clocks show that speech gestures—like other motor activities—work according to a simple serialization principle: Under non-default conditions,<br />alterations of the time-courses may cause speech errors of sound serialization, dyscoordinations of sounds as observed during first language acquisition, or speech disorders as pathological cases. These alterations of the time-course are modelled by varying the two internal-clock factors. The calculation of time-courses uses as default values the sound durations of the context-dependent Munich PHONDAT Database of Spoken German (see Appendix 4). As a new, human approach, this calculation agrees mathematically with the approach of Linear Programming / Operations Research. This work gives strong support to the fairly old suspicion (of 1908) of the famous Austrian speech error scientist Meringer [15], namely that one mostly thinks and articulates in a different serialization than is audible from one’s uttered sound sequences.</p>http://brain.edusoft.ro/index.php/brain/article/view/45speech productionspeech muscle-innervation serializationsound serializationspeech gesture timingspeech errorsspeech pathologyspeech disordersspeech physiologyearliest possible sound-related reafferencesERPsrobotics.
collection DOAJ
language English
format Article
sources DOAJ
author Nora Wiedenmann
spellingShingle Nora Wiedenmann
Thinking soap But Speaking ‘oaps’. The Sound Preparation Period: Backward Calculation From Utterance to Muscle Innervation
Brain: Broad Research in Artificial Intelligence and Neuroscience
speech production
speech muscle-innervation serialization
sound serialization
speech gesture timing
speech errors
speech pathology
speech disorders
speech physiology
earliest possible sound-related reafferences
ERPs
robotics.
author_facet Nora Wiedenmann
author_sort Nora Wiedenmann
title Thinking soap But Speaking ‘oaps’. The Sound Preparation Period: Backward Calculation From Utterance to Muscle Innervation
title_short Thinking soap But Speaking ‘oaps’. The Sound Preparation Period: Backward Calculation From Utterance to Muscle Innervation
title_full Thinking soap But Speaking ‘oaps’. The Sound Preparation Period: Backward Calculation From Utterance to Muscle Innervation
title_fullStr Thinking soap But Speaking ‘oaps’. The Sound Preparation Period: Backward Calculation From Utterance to Muscle Innervation
title_full_unstemmed Thinking soap But Speaking ‘oaps’. The Sound Preparation Period: Backward Calculation From Utterance to Muscle Innervation
title_sort thinking soap but speaking ‘oaps’. the sound preparation period: backward calculation from utterance to muscle innervation
publisher EduSoft publishing
series Brain: Broad Research in Artificial Intelligence and Neuroscience
issn 2067-3957
publishDate 2010-04-01
description <p>In this article’s model—on speech and on speech errors, dyscoordinations, and disorders—, the time-course from the muscle innervation impetuses to the utterance of sounds as intended for canonical speech sound sequences is calculated backward. This time-course is shown as the sum of all the known physiological durations of speech sounds and speech gestures that are necessary to produce an utterance. The model introduces two internal clocks, based on positive or negative factors, representing certain physiologically-based time-courses during the sound preparation period (Lautvorspann). The use of these internal clocks show that speech gestures—like other motor activities—work according to a simple serialization principle: Under non-default conditions,<br />alterations of the time-courses may cause speech errors of sound serialization, dyscoordinations of sounds as observed during first language acquisition, or speech disorders as pathological cases. These alterations of the time-course are modelled by varying the two internal-clock factors. The calculation of time-courses uses as default values the sound durations of the context-dependent Munich PHONDAT Database of Spoken German (see Appendix 4). As a new, human approach, this calculation agrees mathematically with the approach of Linear Programming / Operations Research. This work gives strong support to the fairly old suspicion (of 1908) of the famous Austrian speech error scientist Meringer [15], namely that one mostly thinks and articulates in a different serialization than is audible from one’s uttered sound sequences.</p>
topic speech production
speech muscle-innervation serialization
sound serialization
speech gesture timing
speech errors
speech pathology
speech disorders
speech physiology
earliest possible sound-related reafferences
ERPs
robotics.
url http://brain.edusoft.ro/index.php/brain/article/view/45
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