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| Content Provider | IEEE Xplore Digital Library |
|---|---|
| Author | Ceresa, M. Perez, F. Vera, S. Carranza, N. Herrero Jover, J. Mistrik, P. Gonzalez Ballester, M.A. |
| Copyright Year | 2013 |
| Description | Author affiliation: MED-EL Elektromedizinische Gerate GmbH, Innsbruck, Austria (Mistrik, P.) || Alma IT Syst., Barcelona, Spain (Ceresa, M.; Perez, F.; Vera, S.; Carranza, N.; Herrero Jover, J.; Gonzalez Ballester, M.A.) |
| Abstract | Cochlear implantation is a surgical technique which aims to restore hearing in people with deep hearing loss. However, outcomes of the surgery still exhibit a large variability between patients. Among the factors that contribute to variability the most important are morphological differences in anatomical structures between patients and incorrect implant placements. In order to address these issues, it would be desirable to have a functional model of the cochlea which incorporates inter-patients variability and simulate electrode placement. To this end, we present a finite element model which captures the interaction between the cochlear partition, modeled as an elastic solid with finite deformation, and the perilymph fluid, modeled as a compressible, viscous fluid. Numerical results show that the membrane responds to changes in the stimulation frequencies. |
| Starting Page | 4541 |
| Ending Page | 4544 |
| File Size | 1097908 |
| Page Count | 4 |
| File Format | |
| ISBN | 9781457702167 |
| ISSN | 1557170X |
| DOI | 10.1109/EMBC.2013.6610557 |
| Language | English |
| Publisher | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Publisher Date | 2013-07-03 |
| Publisher Place | Japan |
| Access Restriction | Subscribed |
| Rights Holder | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Subject Keyword | Mathematical model Solids Auditory system Solid modeling Equations Tensile stress Elmer FEM cochlear partition fluid-structure interaction perilymph |
| Content Type | Text |
| Resource Type | Article |
| Subject | Signal Processing Biomedical Engineering Health Informatics Computer Vision and Pattern Recognition |
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