非线性动力学分析方法在嗓音医学中的应用进展
徐新林;郭永清;张宇;庄佩耘;蒋家琪;
1:福建医科大学协和临床医学院
2:厦门大学附属中山医院耳鼻咽喉科
3:厦门大学海洋与地球学院
4:水声通信与海洋信息技术教育部重点实验室
1 韩德民,Sataloff RT,主编.嗓音医学[M].北京:人民卫生出版社,2007.63-64.
2 Moon FC.Chaotic and fractal dynamics:an introduction for applied scientists and engineer[J].American Journal of Physics,1993,61:670.
3 Ellner S.Coping with Chaos:analysis of chaotic data and the exploitation of chaotic systems[J].Bulletin of Mathematical Biology,1995,57:945.
4 Poon CS,Merrill CK.Decrease of cardiac chaos in congestive heart failure[J].Nature,1997,389:492.
5 Hornero R,Alonso A,Jimeno N,et al.Nonlinear analysis of time series generated by schizophrenic patients[J].IEEE Eng Med Biol Mag,1999,3:84.
6 Isshiki N,Tanabe M,Ishizaka K,et al.Clinical significance of asymmetrical vocal cord tension[J].Ann Otol,1977,86:58.
7 Steinecke I,Herzel H.Bifurcations in an asymmetric vocalfold model[J].J Acoust Soc Am,1995,97:1 874.
8 Tao C,Zhang Y,Du GH,et al.Estimating model parameters using chaos synchronization[J].Phys Rev E,2004,69:36 204.
9 Jiang JJ,Zhang Y.Modeling of chaotic vibrations in symmetric vocal folds[J].J Acoust Soc Am,2001,110:2 120.
10 Jiang JJ,Zhang Y,Ford CN.Nonlinear dynamics of phonations in excised larynx experiments[J].J Acoust Soc Am,2003,114:2 198.
11 Tao C,Jiang JJ,Zhang Y.Studying the vocal-fold impact using a self-oscillation finite-element model[J].J Acoust Soc Am,2006,119:3 987.
12 Jiang JJ,Zhang Y,Kelly MP,et al.An automatic method to quantify mucosal wave via videokymography[J].Laryngoscope,2008,118:1 504.
13 Zhang Y,Shao J,Krausert CR,et al.High-speed image analysis reveals chaotic vibratory behaviors of pathological vocal folds[J].Chaos,Solitons,Fractals,2011,44:169.
14 Mergell P,Herzel H,Titze IR.Irregular vocal-fold vibration-High-speed observation and modeling[J].J AcoustSoc Am,2000,108:2 996.
15 Tao C,Jiang JJ,Zhang Y.Measurement of stress in vocal folds during phonation using spatiotemporal synchronization[J].Physics Letters A,2007,362:42.
16 Zhang Y,Jiang JJ.Spatiotemporal chaos in excised larynx vibrations[J].Physical Review E,2005,72:3 520.
17 Titze IR,Liang H.Comparison of F0extraction method for high-precision voice perturbation measurements[J].J Speech Hear Res,1993,36:1 120.
18 Bielamowicz S,Kreiman J,Gerratt BR,et al.Comparision of voice analysis systems for perturbation measurement[J].J Speech Hear Res,1996,39:126.
19 Zhang Y,Rahn D,Jiang JJ.Studying vocal Fold vibrations in parkinson's disease with a computer model[J].Chaos,2005,15:033 903.
20 Zhang Y,Jiang JJ,Biazzo L,et al.Perturbation and nonlinear dynamic analysis of voices from patients with unilateral laryngeal paralysis[J].J Voice,2005,19:519.
21 Hertrich I,Lutzenberger W,Spieker S,et al.Fractal dimension of sustained vowel productions in neurological dysphonias:An acoustic and electroglottographic analysis[J].J Acoust Soc Am,1997,102:652.
22 Giovanni A,Ouaknine M,Triglia JM.Determination of largest Lyapunov exponents of vocal signal:application to unilateral laryngeal paralysis[J].J Voice,1998,13:341.
23 于萍,Maurice O,Antoine G.Lyapunov系数在嗓音障碍评估中的意义[J].听力学及言语疾病杂志,2006,14:175.
24 Jiang JJ,Zhang Y.Nonlinear dynamic analysis of speech from pathological subjects[J].Electronics Letters,2002,38:294.
25 Zhang Y,McGilligan C,Zhou L,et al.Nonlinear dynamic analysis of voices before and after surgical excision of vocal polyps[J].J Acoust Soc Am,2004,115:2 270.
26 Chai LY,Sprecher AJ,Jiang JJ.Perturbation and nonlinear dynamic analysis of adult male smokers[J].J Voice,2011,25:342 .
27 Zhang Y,Jiang JJ,Wallace SM.Comparison of nonlinear dynamic methods and perturbation methods for voice analysis[J].J Acoust Soc Am,2005,118:2 551.
28 Dajer ME,Pereira JC,Maciel CD.Nonlinear dynamical analysis of normal voices[J].IEEE,2005,71:765.
29 Zhang Y,Jiang JJ.Nonlinear dynamic analysis in signal typing of pathological human voices[J].Electronics Letters,2003,39:1 021.