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Título : Advanced-delay differential equation for aeroelastic oscillations in physiology
Autor : Lucero, Jorge Carlos
Assunto:: Cordas vocais
Ondas sonoras
Modelos matemáticos
Fecha de publicación : 2008
Editorial : World Scientific Publishing Company
Citación : LUCERO, Jorge Carlos. Advanced-delay differential equation for aeroelastic oscillations in physiology. Biophysical Reviews and Letters, v. 1, n.1&2, p. 125–133, 2008. Disponível em: <http://www.worldscientific.com/doi/abs/10.1142/S1793048008000654>. Acesso em: 05 mar. 2013. DOI: 10.1142/S1793048008000654
Resumen : This article analyzes a mathematical model for some aeroelastic oscillators in physiology, based on a previous representation for the vocal folds at phonation. The model characterizes the oscillation as superficial wave propagating through the tissues in the direction of the flow, and consists of a functional differential equation with advanced and delay arguments. The analysis shows that the oscillation occurs at a Hopf bifurcation, at which the energy absorbed from the flow overcomes the energy dissipated in the tissues. The bifurcation value of the flow pressure increases linearly with the tissue damping and the oscillation frequency. Also, it is minimum when the phase delay of the superficial wave to travel along the tissues is π, and increases indefinitely when the delay tends to 0 and to 2π.
Licença:: © World Scientific Publishing Company. All of World Scientific and Imperial College Press journals have the option of Open Access in accordance with the Creative Commons Attribution (CC-BY) or (CC-BY-NC) licenses. With the support of the open access Article-Processing Charge (APC), authors can have their papers freely available online.[…].Authors retain copyright with the Creative Commons Attribution (CC-BY) license.WorldScientific.com full text searches with content/citation alerts."Most viewed" and "People also read" features. Fonte: http://www.worldscientific.com/page/authors/openaccess. Acesso em: 05 mar. 2013.
DOI: DOI: https://dx.doi.org/10.1142/S1793048008000654
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