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1.Key Laboratory of Speech and Hearing Sciences of Ministry Education, East China Normal University,Shanghai,200062
2.Shanghai University, Shanghai,200072
CHEN Dong-Fan-1, CHEN Wei-Chao-2, GAO Xiang-2, HAN Xin-Gan-2. Virtual Experimental Platform Design for Physical Model of Human Vocal Fold[J]. China Mechanical Engineering, 2012, 23(21): 2581-2585.
[1]李盛.声带、假声带与喉室的空气动力学建模及其发声特性研究[D].西安:西安交通大学,2005.
[2]Kniesburges S, Becker S, Mueller S, et al. Experi- mental Study of the Fluid-structure-acoustic In- teraction in a Human Voice Model[J]. The Journal of the Acoustical Society of America, 2008, 123 (5) :3737.
[3]Shaw S. Frequency Response of Synthetic Vocal Fold Models with Linear and Nonlinear Material Properties[D]. Provo:Brigham Young University, 2010.
[4]Lan H. An Investigation into the Dynamic Re- sponse of Vocal Folds[D]. Auckland.. Auckland U- niversity, 2006.
[5]Flanagan J, Landgraf L. Self-oscillating Source for Vocal- tract Synthesizers[J]. IEEE Transac- tions on Signal Processing - TSP, 1968,16 ( 1 ) : 57- 64.
[6]Ishizaka K, Flanagan J. Synthesis of Voiced Sounds from a Two-mass Model of the Vocal Cords[J]. Bell Syst. Tech. 1972,51: 1233-1268.
[7]Drechsel J. Characterization of Synthetic, Self- os- cillating Vocal Fold Models[D]. Provo: Brigham Young University, 2007.
[8]Torkaman S. Experimental and Computational Study of Intraglottal Pressures in a Three-Dimen- 'sional Model with a Non-rectangular Glottal Shape [D]. Toledo of University of Toledo, 2011.
[9]Larsson M. Numerical Modeling of Fluid-structure Interaction in the Human Larynx[D]. Trondheim: Norwegian University,2010.
[10]Deguchi S, Miyake Y, Tamura Y, et al. Wavelike Motion of a Mechanical Vocal Fold Model at the Onset of Self-excited Oscillation[J]. Journal of Biomechanical Science and Engineering, 2006, 1 (1) : 246-255.