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Journal of Biomechanics
Volume 38, Issue 9
, Pages 1807-1815
, September 2005
Three approaches for estimating the elastic modulus of the tympanic membrane
References
- . Modelling of components of the human middle ear and simulation of their dynamic behavior. Audiology and Neuro-Otology. 1999;4:156–162
- . Experiments in Hearing. New York: AIP Press; 1960;
- . Computer simulation of human tympanic membrane. Journal of Laryngology and Otology. 1992;106:878–881
- . The structure of the tympanic membrane (a new concept). American Journal of Otology. 1980;2(2):112–117
- . Comparative histology of the tympanic membrane and its relationship to cholesteatoma. Annals of Otology, Rhinology, and Laryngology. 1989;98(10):761–766
- . An elastic stress–strain relation for soft biological tissues based on a structural model. Journal of Biomechanics. 1980;13:463–468
- Decraemer, W.F., Khanna, S.M., Funnell, W.R.J., 1997. Vibrations of the cat tympanic membrane measured with high spatial resolution. In Association for Research in Oto-Laryngology Abstracts. See http://www.ruca.ua.ac.be/bimef/decraemer/eardrum_2344
Hz.htm for animations. - Eiber, A., 1997. Mechanical modeling dynamical investigation of the middel ear. In: K.B. Huttenbrink (Ed.), Middle-Ear Mechanics in Research and Otosurgery, pp. 61–66.
- Fay, J.P., 2001. Cat eardrum mechanics. Ph.D. Thesis, Stanford University, Stanford.
- Ferrazzini, M., 2003. Virtual middle ear: a dynamic mathematical model based on the finite element method. Ph.D. Thesis, Swiss Federal Institute of Technology, Zurich.
- . Middle-ear dynamics before and after ossicular replacement. Journal of Biomechanics. 2000;33(5):581–590
- . Modeling of the cat eardrum as a thin shell using the finite-element method. Journal of the Acoustical Society of America. 1978;63:1461–1466
- . A critical review of experimental observations on ear-drum structure and function. Journal for Oto-Rhino-Laryngology and its related specialties. 1982;44:181–205
- . The mechanism of the ossicles of the ear and membrana tympani. Orginally Published in Pfluger Archiv fur Physiologie. vol. 1. Germany: Bonn; 1868;Translated by Albert H. Buck and Normand Smith (1873), William and Wood Co., New York.
- Hussl, B., Timpl, R., Lim, D.J., Ginzel, M., Wick, G.G., 1988. Immunohistochemical analysis of connective tissues components in tympanosclerosis. Proceedings of the Fourth International Symposium on Recent Advances in Otitis Media, Bal Harbour, Florida.
- . Tympanic membrane vibrations in cats studied by time-averaged holography. Journal of the Acoustical Society of America. 1972;51(6):1904–1920
- . The Structure and Function of the Middle Ear. Tokyo: University of Tokyo; 1960;
- . Modeling of the human middle ear using the finite-element method. Journal of the Acoustical Society of America. 2002;111(3):1306–1317
- Kuypers, L.C., Decraemer, W.F., Dirckx, J.J., 2001. Thickness measurements of a cat's eardrum by use of a confocal microscope. Association for Research in Oto-Laryngology Abstracts.
- Kuypers, L.C., Dirckx, J.J., Decraemer, W.F., 2003. Thickness distribution of a human eardrum measured with confocal microscopy. Association for Research in Oto-Laryngology Abstracts.
- . Tympanic membrane. Electron microscopic observation. I (pars tensa). Acta Oto-laryngologica. 1968;66(3):181–198
- . Human tympanic membrane. An ultrastructural observation. Acta Oto-laryngologica. 1970;70(3):176–186
- . Structure and function of the tympanic membrane (a review). Acta Oto-rhino-laryngol Belgica. 1995;49(2):101–115
- . Measurements and model of the cat middle ear (evidence of tympanic membrane acoustic delay). Journal of the Acoustical Society of America. 1998;104(6):3463–3481
- . A fibrous dynamic continuum model of the tympanic membrane. Journal of the Acoustical Society of America. 1986;80(6):1716–1728
- . Stress–strain curve and Young's modulus of collagen molecule as determined by the X-ray diffraction technique. Journal of Biomechanics. 1996;29(5):655–658
- . Tympanic-membrane structure—new views. A comparative study. ORL Journal for Oto-rhino-laryngology and its Related Specialities. 1991;53(1):32–36
- Steele, C.R., Shad, K.U.R., 1995. Asymptotic-numeric solution for shells of revolution. Applied Mechanics Reviews 48 (11, part 2).
- . Introduction to Composite Materials. Lancaster, Pennsylvania: Technomic Publishing Company, Inc.; 1980;
- . Analysis of dynamic behavior of human middle ear using a finite-element method. Journal of the Acoustical Society of America. 1992;96(6):3157–3166
- . Mechanical Design in Organisms. Princeton: Princeton University Press; 1982;
- . Computational modeling of ligament mechanics. Critical Reviews in Biomedical Engineering. 2001;29(3):303–371
- . Mode shapes of a damaged and repaired tympanic membrane as analyzed by the finite element method. Clinical Otolaryngology. 1997;22:
- . A finite element analysis of the natural frequencies of vibration of the human tympanic membrane. British Journal of Audiology. 1990;24:126–131
- . Heterodyne interferometer for cellular vibration measurement. Acta Otolaryngologica (Stockholm) (Supplimental). 1989;467:35–42
- . Analysis of the middle-ear function. Part I (input impedance). Journal of the Acoustical Society of America. 1962;34:1514–1523
PII: S0021-9290(04)00434-8
doi: 10.1016/j.jbiomech.2004.08.022
© 2004 Elsevier Ltd. All rights reserved.
« Previous
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Journal of Biomechanics
Volume 38, Issue 9
, Pages 1807-1815
, September 2005
