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Rapid Statistical Learning Supporting Word Extraction From Continuous Speech
by
Batterink, Laura J.
in
Acquisition
/ Adolescent
/ Candidates
/ Continuous speech
/ Extraction
/ Female
/ Humans
/ Language
/ Language acquisition
/ Language Development
/ Language Therapy - methods
/ Learning
/ Learning - physiology
/ Male
/ Nonsense words
/ Reaction time
/ Reaction Time - physiology
/ Segmentation
/ Speech
/ Speech - physiology
/ Speech Perception - physiology
/ Statistics
/ Syllables
/ Verbal Learning - physiology
/ Vocabulary
/ Young Adult
2017
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Rapid Statistical Learning Supporting Word Extraction From Continuous Speech
by
Batterink, Laura J.
in
Acquisition
/ Adolescent
/ Candidates
/ Continuous speech
/ Extraction
/ Female
/ Humans
/ Language
/ Language acquisition
/ Language Development
/ Language Therapy - methods
/ Learning
/ Learning - physiology
/ Male
/ Nonsense words
/ Reaction time
/ Reaction Time - physiology
/ Segmentation
/ Speech
/ Speech - physiology
/ Speech Perception - physiology
/ Statistics
/ Syllables
/ Verbal Learning - physiology
/ Vocabulary
/ Young Adult
2017
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Rapid Statistical Learning Supporting Word Extraction From Continuous Speech
by
Batterink, Laura J.
in
Acquisition
/ Adolescent
/ Candidates
/ Continuous speech
/ Extraction
/ Female
/ Humans
/ Language
/ Language acquisition
/ Language Development
/ Language Therapy - methods
/ Learning
/ Learning - physiology
/ Male
/ Nonsense words
/ Reaction time
/ Reaction Time - physiology
/ Segmentation
/ Speech
/ Speech - physiology
/ Speech Perception - physiology
/ Statistics
/ Syllables
/ Verbal Learning - physiology
/ Vocabulary
/ Young Adult
2017
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Rapid Statistical Learning Supporting Word Extraction From Continuous Speech
Journal Article
Rapid Statistical Learning Supporting Word Extraction From Continuous Speech
2017
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Overview
The identification of words in continuous speech, known as speech segmentation, is a critical early step in language acquisition. This process is partially supported by statistical learning, the ability to extract patterns from the environment. Given that speech segmentation represents a potential bottleneck for language acquisition, patterns in speech may be extracted very rapidly, without extensive exposure. This hypothesis was examined by exposing participants to continuous speech streams composed of novel repeating nonsense words. Learning was measured on-line using a reaction time task. After merely one exposure to an embedded novel word, learners demonstrated significant learning effects, as revealed by faster responses to predictable than to unpredictable syllables. These results demonstrate that learners gained sensitivity to the statistical structure of unfamiliar speech on a very rapid timescale. This ability may play an essential role in early stages of language acquisition, allowing learners to rapidly identify word candidates and \"break in\" to an unfamiliar language.
Publisher
SAGE Publications,SAGE PUBLICATIONS, INC
Subject
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