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Titlebook: Mechanics of Hearing; Proceedings of the I E. Boer (Chairman),M. A. Viergever (Secretary) Conference proceedings 1983 Delft University Pres

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978-94-009-6913-1Delft University Press, The Netherlands 1983
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Pseudo-Resonance in the Cochleass of the cochlea. A typical non-linear eigenvalue problem in the transverse cross-section plane results for the phase-function. The slow amplitude and phase variation are obtained analytically. Viscous effects produce traveling waves and a sharp cut-off.
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Advantages from Describing Cochlear Mechanics in Terms of Energy Flow of the cochlea, are both valuably facilitated by a description in terms of energy flow. An attempt is made to describe this approach clearly, to demonstrate its advantages, and to relate it to other approaches.
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The Human External and Middle Ear: Models and Conceptshis sense, the external ear has a high frequency performance quite close to the theoretical limit. Viewed as a directional antenna the external ear is an acoustical wave processor of considerable complexity. Approximately eight normal modes spread over nearly three octaves are required to account fo
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Modeling Reverse Middle Ear Transmission of Acoustic Distortion Signalsodel of the middle ear of cat with air cavities open. Effects of the eardrum, ossicular chain, oval and round windows, and fluid in the vestibule are included. The two ports represented are: 1) the ear canal; and 2) the basal end of the cochlear spiral. The model parameters were selected to fit expe
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On Vibration of Membranes in the Mammalian Cochlea longitudinal canals by either one or two visco-elastic anisotropic plates. One partition is fixed between two rigid slabs and represents the basilar membrane. The second plate can represent either Reissner’s membrane (if its edges are fixed) or the tectorial membrane (if one of its edges remains fr
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