Title of article
Viscous flow features in scaled-up physical models of normal and pathological vocal phonation
Author/Authors
Erath، نويسنده , , Byron D. and Plesniak، نويسنده , , Michael W.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
14
From page
468
To page
481
Abstract
Unilateral vocal fold paralysis results when the recurrent laryngeal nerve, which innervates the muscles of the vocal folds becomes damaged. The loss of muscle and tension control to the damaged vocal fold renders it ineffectual. The mucosal wave disappears during phonation, and the vocal fold becomes largely immobile. The influence of unilateral vocal fold paralysis on the viscous flow development, which impacts speech quality within the glottis during phonation was investigated. Driven, scaled-up vocal fold models were employed to replicate both normal and pathological patterns of vocal fold motion. Spatial and temporal velocity fields were captured using particle image velocimetry, and laser Doppler velocimetry. Flow parameters were scaled to match the physiological values associated with human speech. Loss of motion in one vocal fold resulted in a suppression of typical glottal flow fields, including decreased spatial variability in the location of the flow separation point throughout the phonatory cycle, as well as a decrease in the vorticity magnitude.
Keywords
Speech production , Voice Disorders , Unsteady flow
Journal title
International Journal of Heat and Fluid Flow
Serial Year
2010
Journal title
International Journal of Heat and Fluid Flow
Record number
2381846
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