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Development and Characterization of a Biomimetic Totally Implantable Artificial Basilar Membrane System

Authors
Chung, J | Jung, Y | Hur, S | Kim, JH | Kim, SJ | Kim, WD | Choung, YH  | Oh, SH
Citation
Frontiers in bioengineering and biotechnology, 9. : 693849-693849, 2021
Journal Title
Frontiers in bioengineering and biotechnology
ISSN
2296-4185
Abstract
Cochlear implants (CIs) have become the standard treatment for severe-to-profound sensorineural hearing loss. Conventional CIs have some challenges, such as the use of extracorporeal devices, and high power consumption for frequency analysis. To overcome these, artificial basilar membranes (ABMs) made of piezoelectric materials have been studied. This study aimed to verify the conceptual idea of a totally implantable ABM system. A prototype of the totally implantable system composed of the ABM developed in previous research, an electronic module (EM) for the amplification of electrical output from the ABM, and electrode was developed. We investigated the feasibility of the ABM system and obtained meaningful auditory brainstem responses of deafened guinea pigs by implanting the electrode of the ABM system. Also, an optimal method of coupling the ABM system to the human ossicle for transducing sound waves into electrical signals using the middle ear vibration was studied and the electrical signal output according to the sound stimuli was measured successfully. Although the overall power output from the ABM system is still less than the conventional CIs and further improvements to the ABM system are needed, we found a possibility of the developed ABM system as a totally implantable CIs in the future.
Keywords

DOI
10.3389/fbioe.2021.693849
PMID
34336805
Appears in Collections:
Journal Papers > School of Medicine / Graduate School of Medicine > Otolaryngology
Ajou Authors
정, 연훈
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