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Research Article

A new floating piezoelectric microphone for the implantable middle ear microphone in experimental studies

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Pages 1248-1254 | Received 25 Mar 2016, Accepted 23 May 2016, Published online: 08 Jul 2016

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Read on this site (2)

Yu Zheng, Xian-hao Jia, Na Gao, Xin-Da Xu, Ning Cong & Fang-lu Chi. (2021) Evaluations on the stability and bio-compatibility of a new piezoelectric microphone for the implantable middle ear microphone. Acta Oto-Laryngologica 141:5, pages 506-512.
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Alistair Mitchell-Innes, Robert Morse, Richard Irving & Philip Begg. (2017) Implantable microphones as an alternative to external microphones for cochlear implants. Cochlear Implants International 18:6, pages 304-313.
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Articles from other publishers (14)

Feyza Pirim, Ali Can Atik, Muhammed Berat Yüksel, Akın Mert Yılmaz, Mehmet Birol Uğur, Selçuk Tunalı, Aykan Batu, Mahmut Kamil Aslan, Mehmet Bülent Özer & Haluk Külah. (2024) Multichannel multimodal piezoelectric middle ear implant concept based on MEMS technology for next-generation fully implantable cochlear implant applications. Biosensors and Bioelectronics: X 18, pages 100471.
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Muhammed Berat Yüksel, Ali Can Atik & Haluk Külah. (2024) Piezoelectric Multi‐Channel Bilayer Transducer for Sensing and Filtering Ossicular Vibration. Advanced Science.
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Xin‐Da Xu, Wei‐Xun Zhang, Xian‐Hao Jia, Yong‐Zhen Wu, Hou‐Yong Kang, Fang‐Lu Chi & Na Gao. (2023) A New Floating Piezoelectric Microphone for Fully Implantable Cochlear Implants in Middle Ear. The Laryngoscope 134:2, pages 937-944.
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Alison E. Hake, Panagiota Kitsopoulos & Karl Grosh. (2023) Design of Piezoelectric Dual-Bandwidth Accelerometers for Completely Implantable Auditory Prostheses. IEEE Sensors Journal 23:13, pages 13957-13965.
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Yiqun Liu, Qi Yu, Li Yang & Yue Cui. (2022) Materials and Biomedical Applications of Implantable Electronic Devices. Advanced Materials Technologies 8:4.
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Berkay Ozbek & Haluk Kulah. (2022) A 9.03 µW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis. A 9.03 µW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis.
Norma Mallegni, Giovanna Molinari, Claudio Ricci, Andrea Lazzeri, Davide La Rosa, Antonino Crivello & Mario Milazzo. (2022) Sensing Devices for Detecting and Processing Acoustic Signals in Healthcare. Biosensors 12:10, pages 835.
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Zoran Djinović, Robert Pavelka, Miloš Tomić, Georg Sprinzl, Julia Gertrud Müller & Hannes Traxler. (2021) Experimental study of an implantable fiber-optic microphone on human cadavers. Hearing Research 410, pages 108351.
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Alison E. Hake, Chuming Zhao, Wang-Kyung Sung & Karl Grosh. (2021) Design and Experimental Assessment of Low-Noise Piezoelectric Microelectromechanical Systems Vibration Sensors. IEEE Sensors Journal 21:16, pages 17703-17711.
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H. Andac Yigit, Hasan Ulusan, Mert Koc, M. Berat Yuksel, Salar Chamanian & Haluk Kulah. (2021) Single Supply PWM Fully Implantable Cochlear Implant Interface Circuit With Active Charge Balancing. IEEE Access 9, pages 52642-52653.
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Bajrang C., G. Vaira Suganthi, R. Tamilselvi, M. Parisabeham & A. Nagaraj. (2019) A Systematic Review of Energy Harvesting from Biomechanical Factors. Biomedical and Pharmacology Journal 12:04, pages 2063-2070.
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Hasan Ulusan, Ali Muhtaroglu & Haluk Kulah. (2019) A Sub-500 $\mu$ W Interface Electronics for Bionic Ears. IEEE Access 7, pages 132140-132152.
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Diego Calero, Stephan Paul, André Gesing, Fabio Alves & Júlio A. Cordioli. (2018) A technical review and evaluation of implantable sensors for hearing devices. BioMedical Engineering OnLine 17:1.
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A. L. Gesing, F. D. P. Alves, S. Paul & J. A. Cordioli. (2018) On the design of a MEMS piezoelectric accelerometer coupled to the middle ear as an implantable sensor for hearing devices. Scientific Reports 8:1.
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