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一种用于中耳完全可植入式耳蜗植入物的新型浮动压电麦克风。

A New Floating Piezoelectric Microphone for Fully Implantable Cochlear Implants in Middle Ear.

机构信息

Department of Otology and Skull Base Surgery, Eye Ear Nose & Throat Hospital, Fudan University, Shanghai, China.

Shanghai Auditory Medical Center, Shanghai, China.

出版信息

Laryngoscope. 2024 Feb;134(2):937-944. doi: 10.1002/lary.30861. Epub 2023 Jul 8.

Abstract

OBJECTIVE

Our team designed a long-lasting, well-sealed microphone, which uses laser welding and vacuum packaging technology. This study examined the sensitivity and effectiveness of this new floating piezoelectric microphone (NFPM) designed for totally implantable cochlear implants (TICIs) in animal experiments and intraoperative testing.

METHODS

Different NFPM frequency responses from 0.25 to 10 kHz at 90 dB SPL were analyzed using in vivo testing of cats and human patients. The NFPM was tested in different positions that were clamped to the ossicular chains or placed in the tympanic cavity of cats and human patients. Two volunteers' long incus foot and four cats' malleus neck of the ossicular chain were clamped with the NSFM. The output electrical signals from different locations were recorded, analyzed, and compared. The NFPM was removed after the test without causing any damage to the middle-ear structure of the cats. Intraoperative tests of the NFPM were performed during the cochlear implant surgery and the cochlear implant surgery was completed after all tests.

RESULTS

Compared with the results in the tympanic cavity, the NFPM could detect the vibration from the ossicular chain more sensitively in cat experiments and intraoperative testing. We also found that the signal output level of the NFPM decreased as the acoustic stimulation strength decreased in the intraoperative testing.

CONCLUSION

The NFPM is effective in the intraoperative testing, making it feasible as an implantable middle-ear microphone for TICIs.

LEVEL OF EVIDENCE

4 Laryngoscope, 134:937-944, 2024.

摘要

目的

我们团队设计了一种持久、密封良好的麦克风,采用激光焊接和真空包装技术。本研究通过动物实验和术中测试,考察了这种专为完全植入式人工耳蜗(TICI)设计的新型浮动压电麦克风(NFPM)的灵敏度和有效性。

方法

通过对猫和人类患者的体内测试,分析了 NFPM 在 90dB SPL 下从 0.25 到 10kHz 的不同频率响应。将 NFPM 放置在猫和人类患者的听骨链夹或鼓室中进行测试。用 NSFM 夹住两名志愿者的长砧骨脚和四只猫的锤骨颈。记录、分析和比较来自不同位置的输出电信号。测试后,NFPM 被移除,而不会对猫的中耳结构造成任何损伤。在人工耳蜗植入手术期间进行了 NFPM 的术中测试,并且在完成所有测试后完成了人工耳蜗植入手术。

结果

与鼓室中的结果相比,在猫实验和术中测试中,NFPM 可以更敏感地检测到听骨链的振动。我们还发现,在术中测试中,随着声刺激强度的降低,NFPM 的信号输出水平降低。

结论

NFPM 可有效用于术中测试,使其成为 TICI 可植入中耳麦克风的一种可行选择。

证据水平

4.《喉镜》,134:937-944,2024.

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