Jia Xian-Hao, Gao Na, Xu Xin-da, Wu Yong-Zhen, Kang Hou-Yong, Chi Fang-Lu
a Department of Otology and Skull Base Surgery , Eye Ear Nose & Throat Hospital, Fudan University , Shanghai , PR China.
b Shanghai Clinical Medical Center of Hearing Medicine , Shanghai , PR China.
Acta Otolaryngol. 2016 Dec;136(12):1248-1254. doi: 10.1080/00016489.2016.1201590. Epub 2016 Jul 8.
The new floating piezoelectric microphone is feasible for use as an implantable middle ear microphone in a totally implantable cochlear implant.
A piezoelectric sensor that is driven by the acoustic vibration of the ossicles is one possible design for a microphone for a totally implantable cochlear implant. Such a new floating piezoelectric microphone has been manufactured in the lab. The purpose of this article was to study the frequency response of the new floating piezoelectric microphone in the intact ossicular chain and to identify whether it is usable and implantable.
The frequency response of the new floating piezoelectric microphone was analyzed using in vitro testing of fresh cadaveric heads. The microphone, which was designed with an integrated unibody structure to ensure good biocompatibility and capsulation, was attached to the long process of the incus by a titanium clip, or placed in the tympanic cavity and stimulated with pure tones of different frequencies.
The new floating piezoelectric microphone can pick up the vibration of the long process of the incus and convert it into electrical signals sensitively and flatly.
新型浮动压电式麦克风作为全植入式人工耳蜗的中耳植入式麦克风是可行的。
一种由听小骨的声振动驱动的压电传感器是全植入式人工耳蜗麦克风的一种可能设计。这种新型浮动压电式麦克风已在实验室制造出来。本文的目的是研究新型浮动压电式麦克风在完整听骨链中的频率响应,并确定其是否可用及可植入。
通过对新鲜尸体头部进行体外测试来分析新型浮动压电式麦克风的频率响应。该麦克风设计为一体式结构以确保良好的生物相容性和封装性,通过钛夹固定在砧骨长突上,或置于鼓室内并用不同频率的纯音进行刺激。
新型浮动压电式麦克风能够灵敏且平稳地拾取砧骨长突的振动并将其转换为电信号。