Development of a Model of the Electrically Stimulated Cochlea
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-10981-7_10
Reference23 articles.
1. Berenstein, C.K., Mens, L.H., Mulder, J.J., Vanpoucke, F.J.: Current steering and current focusing in cochlear implants: Comparison of monopolar, tripolar, and virtual channel electrode configurations. Ear Hear. 29, 250–260 (2008)
2. Berenstein, C.K., Vanpoucke, F.J., Mulder, J.J., Mens, L.H.: Electric field imaging as a means to predict the loudness of monopolar and tripolar stimuli in cochlear implant recipients. Hear. Res. 270, 28–38 (2010)
3. Briaire, J.J.: Cochlear implants from model to patients, Thesis, ISBN 978-90-9023555-4, Universiteit Leiden (2008)
4. Colletti, L., Mandal, M., Colletti, V.: Cochlear implants in children younger than 6 months. Otolaryngol. Head Neck Surg. Off J. Am. Acad. Otolaryngol. Head Neck Surg. 147(1), 139–146 (2012)
5. Escudé, B., James, C., Deguine, O., Cochard, N., Eter, E., Fraysse, B.: The size of the cochlea and predictions of insertion depth angles for cochlear implant electrodes. Audiol. Neurotology 11(suppl 1), 27–33 (2006)
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