Development of a Double-Membrane Sound Generator for Application in a Voice-Producing Element for Laryngectomized Patients
Author:
Publisher
Springer Science and Business Media LLC
Subject
Biomedical Engineering
Link
http://link.springer.com/content/pdf/10.1007/s10439-006-9196-3.pdf
Reference29 articles.
1. Blood G. W., 1984 Fundamental frequency and intensity measurements in laryngeal and alaryngeal speakers. J. Commun. Disord. 17(5):319–324
2. Cheesman A. D., J. Knight, J. McIvor, A. Perry. 1986. Tracheo-oesophageal ‘puncture speech’. An assessment technique for failed oesophageal speakers. J. Laryngol. Otol. 100(2):191–199
3. Collier R. 1975. Physiological correlates of intonation patterns. J. Acoust. Soc. Am. 58(1):249–255
4. De Vries M. P., M. C. Hamburg, H. K. Schutte, G. J. Verkerke, A. E. P. Veldman. 2003. Numerical simulation of self-sustained oscillation of a voice-producing element based on Navier–Stokes equations and the finite element method. J. Acoust. Soc. Am. 113(4 Pt 1):2077–2083
5. De Vries M. P., A. Van der Plaats, M. Van der Torn, H. F. Mahieu, H. K. Schutte, G. J. Verkerke. 2000. Design and in vitro testing of a voice-producing element for laryngectomized patients. Int. J. Artif. Organs. 23(7):462–472
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