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首页> 外文期刊>Hearing Research: An International Journal >Comparisons of electromagnetic and piezoelectric floating-mass transducers in human cadaveric temporal bones.
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Comparisons of electromagnetic and piezoelectric floating-mass transducers in human cadaveric temporal bones.

机译:人类尸体颞骨中电磁和压电浮质换能器的比较。

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摘要

Electromagnetic floating-mass transducers for implantable middle-ear hearing devices (IMEHDs) afford the advantages of a simple surgical implantation procedure and easy attachment to the ossicles. However, their shortcomings include susceptibility to interference from environmental electromagnetic fields, relatively high current consumption, and a limited ability to output high-frequency vibrations. To address these limitations, a piezoelectric floating-mass transducer (PFMT) has recently been developed. This paper presents the results of a comparative study of these two types of vibration transducer developed for IMEHDs. The differential electromagnetic floating-mass transducer (DFMT) and the PFMT were implanted in two different sets of three cadaveric human temporal bones. The resulting stapes displacements were measured and compared on the basis of the ASTM standard for describing the output characteristics of IMEHDs. The experimental results show that the PFMT can produce significantly higher equivalent sound pressure levels above 3 kHz, due to the flat response of the PFMT, than can the DFMT. Thus, it is expected that the PFMT can be utilized to compensate for high-frequency sensorineural hearing loss.
机译:用于植入式中耳助听器(IMEHD)的电磁浮质换能器具有简单的手术植入程序和易于附着在小骨上的优点。然而,它们的缺点包括易受环境电磁场的干扰,相对较高的电流消耗以及输出高频振动的能力有限。为了解决这些局限性,最近开发了压电浮质换能器(PFMT)。本文介绍了针对IMEHD开发的这两种类型的振动传感器的比较研究结果。差分电磁浮动质量换能器(DFMT)和PFMT分别植入两组不同的三个人体尸体颞骨中。根据描述IMEHD的输出特性的ASTM标准,测量并比较由此产生的带位移。实验结果表明,由于PFMT的平坦响应,PFMT可以产生比DFMT更高的等效声压级,高于3 kHz。因此,期望可以利用PFMT来补偿高频感音神经性听力损失。

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