Department of Otolaryngology, Eye and ENT Hospital, Fudan University, Shanghai, China.
Laryngoscope. 2013 Jun;123(6):1506-13. doi: 10.1002/lary.23618. Epub 2013 Apr 26.
OBJECTIVES/HYPOTHESIS: A piezoelectric sensor, floating piezoelectric microphone, driven by acoustic vibration of the ossicles, is one possible design for a microphone for a totally implantable cochlear implant. The purpose of the article was to study the frequency response of the floating piezoelectric microphone and to identify the ideal feasible position in the ossicular chain.
Basic Research.
The frequency response of the floating piezoelectric microphone was analyzed by finite-element modeling and in vitro testing of fresh cadaveric heads. The floating piezoelectric microphone, 5.0 mm in length and 1.5 mm by 1.2 mm in rectangular cross section, as a piezoelectric microphone, was placed at various locations on the ossicular chain and stimulated by pure tones of different frequencies.
The floating piezoelectric microphone can pick up the vibration of the ossicular chain and effectively convert it into the electronic signals effectively both in the long process of incus and in the malleus. The average sensitivity of the FPM is -44.22 dB rms ref 1V at 1000 Hz in the long process of incus, -53.33 dB rms ref 1V at 1000 Hz in the malleus, and -108.59 dB rms ref 1V at 1000 Hz in the tympanic cavity.
The floating piezoelectric microphone is expected to be used as an implantable middle ear microphone for the totally implantable cochlear implant.
目的/假设:压电传感器,即浮动式压电麦克风,由听小骨的声振动驱动,是一种用于全植入式人工耳蜗的麦克风的可能设计。本文的目的是研究浮动式压电麦克风的频率响应,并确定听骨链中理想的可行位置。
基础研究。
通过有限元建模和新鲜尸体头颅的体外测试分析浮动式压电麦克风的频率响应。浮动式压电麦克风长 5.0 毫米,矩形横截面为 1.5 毫米乘 1.2 毫米,作为压电麦克风,放置在听骨链的各个位置,并通过不同频率的纯音刺激。
浮动式压电麦克风可以拾取听骨链的振动,并在砧骨的长过程中和锤骨中有效地将其有效地转换为电子信号。在砧骨的长过程中,FPM 的平均灵敏度为-44.22 dB rms ref 1V 在 1000 Hz,在锤骨中为-53.33 dB rms ref 1V 在 1000 Hz,在鼓膜腔中为-108.59 dB rms ref 1V 在 1000 Hz。
浮动式压电麦克风有望用作全植入式人工耳蜗的植入式中耳麦克风。