Exploring Human Speech Production Mechanisms by MRI(<Special Section>Speech Dynamics by Ear, Eye, Mouth and Machine)
スポンサーリンク
概要
- 論文の詳細を見る
Recent investigations using magnetic resonance imaging (MRI) of human speech organs have opened up new avenues of research. Visualization of the speech production system provides abundant information on the physiological and acoustic realization of human speech. This article summarizes the current status of MRI applications with respect to speech research as well as our own experience of discovery and re-evaluation of acoustic events emanating from the vocal tract and physiological mechanisms.
- 社団法人電子情報通信学会の論文
- 2004-05-01
著者
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Fujita S
Atr Human Information Science Laboratories
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HONDA Kiyoshi
ATR Human Information Science Laboratories
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TAKEMOTO Hironori
ATR Human Information Science Laboratories
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KITAMURA Tatsuya
ATR Human Information Science Laboratories
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FUJITA Satoru
ATR Human Information Science Laboratories
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TAKANO Sayoko
ATR Human Information Science Laboratories
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Honda Kiyoshi
Atr Cognitive Information Science Laboratories
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Takano S
Atr Human Information Science Laboratories:japan Science And Technology Agency
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Honda K
Human Information Science Laboratories Atr
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Kitamura T
Atr Media Information Science Laboratories
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Kitamura Tatsuya
Atr Media Information Science Laboratories
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Takemoto Hironori
ATR Cognitive Information Science Laboratories
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Honda Kiyoshi
Atr Human Information Processing Research Laboratories
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Kitamura Tatsuya
Fac. Of Intel Ligence And Informatics Konan Univ.
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Takano Sayoko
ATR Human Information Processing Laboratories,2-2,Hikaridai,Seika-cho,Souraku-gun,Kyoto-hu,619-0288 Japan
関連論文
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- Brain regions involved in motor control of speech
- Exploring Human Speech Production Mechanisms by MRI(Speech Dynamics by Ear, Eye, Mouth and Machine)
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- Effect of Fat-saturation Pulse on EPI Time Series in the Presence of B_0 Drift
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- Evolution of vowel production studies and observation techniques( THE VOWEL : From Chiba and Kajiyama to current issues)
- Individual variation of the hypopharyngeal cavities and its acoustic effects
- A method of tooth superimposition on MRI data for accurate measurement of vocal tract shape and dimensions
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