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汉诺威耦合器:使用浮动质量传感器在圆窗刺激中进行可控静态预应力

The Hannover Coupler: Controlled Static Prestress in Round Window Stimulation With the Floating Mass Transducer.

作者信息

Müller Mathias, Salcher Rolf, Lenarz Thomas, Maier Hannes

机构信息

Cluster of Excellence Hearing4all, Department of Otolaryngology and Institute of Audioneurotechnology (VIANNA), Hannover Medical School, Hannover, Germany.

出版信息

Otol Neurotol. 2017 Sep;38(8):1186-1192. doi: 10.1097/MAO.0000000000001484.

DOI:10.1097/MAO.0000000000001484
PMID:28657955
Abstract

INTRODUCTION

Stimulation of the cochlear round window (RW) with the floating mass transducer (FMT) still suffers from large variation in clinical outcomes. Beside the geometric mismatch between RW and FMT diameter that is a known limiting factor in achieving optimal coupling between actuator and RW membrane, the applied static force between FMT and RW is usually undefined. In this study, the feasibility and efficacy of a specially designed FMT coupler permitting application of static preloads to the RW membrane to optimize FMT-RW coupling was investigated.

METHODS

Experiments were performed in fresh human cadaveric temporal bones. The "Hannover Coupler" FMT-prosthesis has a spherical tip (d=0.5 mm) at the front end and a spring at the prosthesis back that enables the application of static preloads and mobility of the FMT at the same time. Stapes footplate (SFP) displacements in response to acoustic stimulation of the tympanic membrane and to RW stimulation by the FMT were measured by a Laser-Doppler vibrometer.

RESULTS

Average SFP displacement responses of ASTM standard F2504-05 compliant temporal bones to RW stimulation by the "Hannover Coupler" were dependent on the applied force (∼0-100 mN) and increased by up to 25 dB at frequencies ≥ 1 kHz. When averaged at speech relevant frequencies (0.5, 1, 2, 4 kHz) SFP displacements showed a global maximum at RW preloads of ∼4 mN.

CONCLUSION

The coupling between FMT and RW membrane was improved by the application of static RW preloads as indicated by increased SFP amplitudes to RW stimulation.

摘要

引言

使用浮动质量传感器(FMT)刺激耳蜗圆窗(RW)的临床效果仍存在很大差异。除了RW与FMT直径之间的几何不匹配(这是实现致动器与RW膜之间最佳耦合的已知限制因素)外,FMT与RW之间施加的静力通常也不明确。在本研究中,研究了一种专门设计的FMT耦合器的可行性和有效性,该耦合器允许对RW膜施加静态预载荷以优化FMT-RW耦合。

方法

在新鲜的人类尸体颞骨上进行实验。“汉诺威耦合器”FMT假体在前端有一个球形尖端(d = 0.5毫米),在假体后端有一个弹簧,可同时施加静态预载荷并使FMT移动。通过激光多普勒振动计测量镫骨足板(SFP)对鼓膜声刺激和FMT对RW刺激的响应位移。

结果

符合ASTM标准F2504-05的颞骨对“汉诺威耦合器”RW刺激的平均SFP位移响应取决于施加的力(约0-100毫牛),并且在频率≥1千赫兹时增加了高达25分贝。当在语音相关频率(0.5、1、2、4千赫兹)下平均时,SFP位移在约4毫牛的RW预载荷下显示出全局最大值。

结论

如RW刺激时SFP振幅增加所示,通过施加静态RW预载荷改善了FMT与RW膜之间的耦合。

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