Literature DB >> 18401267

Onset and offset phonation threshold flow in excised canine larynges.

Michael F Regner1, Chao Tao, Peiyun Zhuang, Jack J Jiang.   

Abstract

OBJECTIVES/HYPOTHESIS: In this study, we examined the hypothesis that the minimum flow required for phonation onset, the onset phonation threshold flow (PTF), is greater than the minimum flow to sustain phonation, the offset PTF. We also explored the hypothesis that the ratio of these two (PTF offset divided by PTF onset) falls within [0.707, 1.0]. STUDY
DESIGN: This was a methodology study to measure onset and offset PTFs in 10 excised canine larynges; their ratio (PTF offset divided by PTF onset) was predicted to fall in a specific domain.
METHODS: The onset and offset PTF and phonation threshold pressure (PTP) values were observed using 10 excised canine larynges mounted on a bench apparatus. The subglottal flow was increased until phonation was observed, and then decreased until phonation ceased; airflow and pressure measurements at critical conditions of phonation were observed as the PTF and PTP. Larynges with elongated vocal folds were then tested to observe PTF and determine if the hypothesis was observed in pathologic-like larynges.
RESULTS: The offset PTF was always less than the onset PTF (P << .0001) and 80.0% of the observed onset-offset PTF ratios were bound by [0.707, 1.0].
CONCLUSIONS: PTF onset or offset could be a useful diagnostic parameter of the voice, particularly when used in conjunction with PTP to describe laryngeal resistance and aerodynamic power. Further exploration of the relationship between onset and offset PTF values could augment clinical diagnostic ability and advance current theories on the physics of phonation.

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Year:  2008        PMID: 18401267      PMCID: PMC3187923          DOI: 10.1097/MLG.0b013e31816e2ec7

Source DB:  PubMed          Journal:  Laryngoscope        ISSN: 0023-852X            Impact factor:   3.325


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Authors:  Randall L Plant; Gary L Freed; Richard E Plant
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3.  Dependence of phonation threshold pressure on vocal tract acoustics and vocal fold tissue mechanics.

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5.  The phonation critical condition in rectangular glottis with wide prephonatory gaps.

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6.  The minimum lung pressure to sustain vocal fold oscillation.

Authors:  J C Lucero
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7.  A theoretical study of the hysteresis phenomenon at vocal fold oscillation onset-offset.

Authors:  J C Lucero
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8.  Further studies of phonation threshold pressure in a physical model of the vocal fold mucosa.

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9.  The physics of small-amplitude oscillation of the vocal folds.

Authors:  I R Titze
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10.  Phonation threshold pressure in a physical model of the vocal fold mucosa.

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6.  Phonation instability flow in excised canine larynges.

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7.  Phonation threshold pressure and flow in excised human larynges.

Authors:  Ted Mau; Joseph Muhlestein; Sean Callahan; Kent T Weinheimer; Roger W Chan
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8.  Vibratory onset and offset times in children: A laryngeal imaging study.

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10.  Effect of dehydration on phonation threshold flow in excised canine larynges.

Authors:  Rachel E Witt; Michael F Regner; Chao Tao; Adam L Rieves; Peiyun Zhuang; Jack J Jiang
Journal:  Ann Otol Rhinol Laryngol       Date:  2009-02       Impact factor: 1.547

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