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Events and Research in Speech, Language, and Hearing Disorders

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    These news items are gleaned from over 500 sources on the Internet and are provided as a service to our patrons. The University of Texas at Dallas does not guarantee the veracity, reliability or completeness of any information provided on this page, in the comments, or in any hyperlink appearing on this page

  • Callier Center News

    Program to Help Families Facing Autism Challenge

    Reaching out to families touched by autism, the UT Dallas Callier Center for Communication Disorders is offering a pilot program to help parents facing a child's new diagnosis.

    Strategy Training and Response to Therapy (START) focuses on children 18 months to 5 years old who have been recently diagnosed with an autism spectrum disorder and who have received an autism assessment through Children’s Medical Center of Dallas..

    Read the rest of the story at the UTD News Center

    A Cure For Tinnitus at UTD?

    A promising new therapy has made its way from Australia to the States. The Callier Center for Communication Disorders at University of Texas at Dallas is one of about 200 medical centers offering Neuromonics, a treatment device for tinnitus developed by an Australian audiologist, Dr. Paul Davis.

    Dallas audiologist Anne Howell, head of Callier's tinnitus clinic, says the treatment works by retraining neural pathways in the brain. As a result, the auditory system is desensitized to the sound.

    Read the rest of the story at The Dallas Observer
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Vowel Space Characteristics and Vowel Identification Accuracy

Posted by Callier Library on May 29, 2008

from the Journal of Speech, Language, and Hearing Research

Purpose: To examine the relation between vowel production characteristics and intelligibility.

Method: Acoustic characteristics of 10 vowels produced by 45 men and 48 women from the J. M. Hillenbrand, L. A. Getty, M. J. Clark, and K. Wheeler (1995) study were examined and compared with identification accuracy. Global (mean f0, F1, and F2; duration; and amount of formant movement) and fine-grained measures (vowel space area; mean distance among vowels; f0, F1, and F2 ranges; duration ratio between long and short vowels; and formant movement ratio between dynamic and static vowels) were used to predict identification scores. Acoustic measures of the most frequently confused pairs (/æ/–// and //–//) were compared.

Results: Global and fine-grained measures accounted for less than 1/4 of variance in identification scores: Vowel space area alone accounted for 9%–12% of variance. Differences in vowel identification were largely due to poor identification of /æ/, //, //, or //. Well-identified vowels were distinctive in formant frequencies, duration, and amount of formant movement over time.

Conclusions: Distinctiveness among neighboring vowels is more important in determining vowel intelligibility than vowel space area. Acoustic comparison of confused vowels may be more useful in studying intelligibility of normal and disordered speech than in measuring vowel space area.

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