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首页> 外文期刊>Ear, nose and throat journal >Characterization of ossicular chain vibration at the umbo: implications for a middle ear microelectromechanical system design.
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Characterization of ossicular chain vibration at the umbo: implications for a middle ear microelectromechanical system design.

机译:耳骨听骨链振动的特征:对中耳微机电系统设计的影响。

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摘要

We propose the use of a microelectromechanical system (MEMS) accelerometer as a middle ear microphone for future totally implantable cochlear prostheses. The MEMS accelerometer would be attached to the umbo to detect and convert the natural bone vibration that occurs in response to external sounds into an electrical signal that represents the acoustic information. The signal could be further processed to stimulate cochlear implant electrodes. To determine the feasibility of our proposal, we conducted a study to investigate whether the characteristics of umbo vibration along two orthogonal axes-one axis being perpendicular to the tympanic membrane and the other axis being parallel to the tympanic membrane plane but orthogonal to the long process of the malleus-differ significantly enough to compromise the sensing performance of the proposed accelerometer should a position misalignment occur during the implant procedure. We used laser Doppler vibrometry to measure the displacement of the umbo along the two orthogonal axes in 4 cadaveric temporal bones at multiple frequencies within the audible spectrum. We found that the peak-to-peak displacement frequency response along both axes was nearly flat from 250 Hz to 1 kHz, and it gradually rolled off with a slope of approximately -20 dB and -40 dB per decade above 1 kHz and 4 kHz, respectively. At each frequency, the displacement exhibited a linear function of the input sound level with a slope of 20 dB per decade. A comparison of measurements along the two axes indicated a similar frequency response, with an average amplitude difference of 20%. The characterization data suggest that the performance of a miniature ossicular vibration-sensing device attached on the umbo would not be degraded in the event of a position misalignment. The data also indicate that a MEMS accelerometer needs to achieve a resolution of 35 i g/sqrt[Hz] to detect normal conversation.
机译:我们建议使用微机电系统(MEMS)加速度计作为中耳式麦克风,以用于将来的完全植入式人工耳蜗。 MEMS加速度计将连接到机身上,以检测并将响应于外部声音而发生的自然骨骼振动转换为代表声学信息的电信号。该信号可以被进一步处理以刺激耳蜗植入电极。为了确定我们的建议的可行性,我们进行了一项研究,以研究沿两个正交轴(一个轴垂直于鼓膜而另一个轴平行于鼓膜平面但正交于长过程)的超音波振动特性如果在植入过程中发生位置不对中,则踝关节的前倾角足以显着损害拟议的加速度计的传感性能。我们使用激光多普勒振动法在可听频谱内的多个频率上测量了沿4个尸体颞骨中两个正交轴的本影的位移。我们发现沿两个轴的峰峰值位移频率响应从250 Hz到1 kHz几乎是平坦的,并且在1 kHz和4 kHz之上每十年每十年大约-20 dB和-40 dB的斜率逐渐滚降, 分别。在每个频率下,位移表现出输入声级的线性函数,每十年的斜率为20 dB。沿两个轴的测量结果比较显示出相似的频率响应,平均幅度差为20%。表征数据表明,在位置未对准的情况下,安装在机身上的小型听骨振动传感装置的性能不会降低。数据还表明,MEMS加速度计需要达到35 i g / sqrt [Hz]的分辨率才能检测正常对话。

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