Experimental Assessment of the Performance of an Electromagnetic Hearing Aid in Human Temporal Bones(<Special Issue>Bioengineering)
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概要
- 論文の詳細を見る
To circumvent some of the problems inherent in conventional hearing aids such as low gain at high frequencies due to acoustic feedback, discomfort in occlusion of the external ear canal and so on, implantable hearing aids have been developed over the past two decades. The most prominent feature of implantable hearing aids is that a transducer is directly coupled to the one of the middle-ear ossicles. However, since invasive surgery is necessary for implantation of these hearing aids, they have not as yet been widely employed. We therefore constructed a prototype of a non-implantable hearing aid which is mainly composed of a microphone amplifier system and an electromagnetic transducer developed in our previous study. It can generate an excitation force to vibrate the ossicles by a coil adhered to the tympanic membrane. In this study, the excitation force generated by this hearing aid was evaluated using human temporal bones. The best result of experiments using three bones indicates that the newly developed hearing aid can generate an excitation force of more than 80dB SPL in terms of sound pressure at frequencies between 0.8 and 3.2 kHz.
- 2005-12-15
著者
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KOBAYASHI Toshimitsu
Department of Otolaryngology, Nagasaki University School of Medicine
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Kobayashi Toshimitsu
Department Of Cardiovascular Surgery Tohoku University Graduate School Of Medicine
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WADA HIROSHI
Department of Surgery, Graduate School of Medicine, Osaka University
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Wada Hiroshi
Department Of Cardiovascular Science And Medicine Chiba University Graduate School Of Medicine
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Kobayashi T
Department Of Cardiovascular Surgery Tohoku University Graduate School Of Medicine
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HAMANISHI Shinji
Department of Bioengineering and Robotics, Tohoku University
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KOIKE Takuji
Department of Mechanical Engineering and Intelligent Systems, The University of Electro-Communicatio
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CHIEN Wade
Eaton-Peabody Laboratory, Massachusetts Eye and Ear Infirmary
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RAVICZ Michael
Eaton-Peabody Laboratory, Massachusetts Eye and Ear Infirmary
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ROSOWSKI John
Eaton-Peabody Laboratory, Massachusetts Eye and Ear Infirmary
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MERCHANT Saumil
Eaton-Peabody Laboratory, Massachusetts Eye and Ear Infirmary
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Chien Wade
Eaton-peabody Laboratory Massachusetts Eye And Ear Infirmary
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Koike Takuji
Department Of Mechanical Engineering And Intelligent Systems The University Of Electro-communication
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Wada H
Department Of Bioengineering And Robotics Tohoku University
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Rosowski John
Eaton-peabody Laboratory Massachusetts Eye And Ear Infirmary
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Ravicz Michael
Eaton-peabody Laboratory Massachusetts Eye And Ear Infirmary
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Hamanishi Shinji
Department Of Bioengineering And Robotics Tohoku University
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Merchant Saumil
Eaton-peabody Laboratory Massachusetts Eye And Ear Infirmary
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Wada Hiroshi
Department Of Bioengineering And Robotics Tohoku University
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Koike Takuji
Department Of Mechanical Engineering And Intelligent Systems The University Of Electro-communication
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Kosho Tomoki
Department Of Medical Genetics Shinshu University School Of Medicine
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