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Factors improving the vibration transfer of the floating mass transducer at the round window.

机译:改善圆窗处浮动质量传感器振动传递的因素。

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摘要

OBJECTIVES: With the placement of a floating mass transducer (FMT) at the round window, a new approach of coupling an implantable hearing system to the cochlea has been introduced. The aim of the present experimental study is to examine the influence of different ways of FMT placement at the round window on the vibration energy transfer to the cochlea. MATERIAL AND METHODS: Experiments were performed on 8 ears of human whole head specimens. A mastoidectomy and facial recess approach were performed to access the middle ear structures. Seven different conditions were compared, that is, a perpendicular or 90-degree rotated position of the FMT in the round window niche, overlaid or underlaid with connective tissue or with tight fixation and disrupted ossicular chain. The FMT was stimulated electrically and the movements at the FMT, the stapes head, and the promontory were measured using laser Doppler vibrometry. RESULTS: Vibration transmission to the cochlear fluids was best with the FMT placed perpendicular to the round window membrane and underlaid with connective tissue. The energy transfer to the inner ear was up to 45 dB higher compared with tight fixation condition, where the poorest energy transfer was found. Underlaying the FMT with connective tissue improved energy transfer even for a suboptimal orientation of the FMT. CONCLUSION: The way of coupling of the FMT to the round window has a substantial influence on the vibration transmission. Energy transfer to the inner ear is highest with the FMT placed in the round window and underlaid with tissue.
机译:目的:通过在圆窗处放置一个浮动质量传感器(FMT),引入了一种将可植入的听力系统耦合到耳蜗的新方法。本实验研究的目的是研究将FMT放置在圆窗上的不同方式对振动能量传递到耳蜗的影响。材料与方法:实验是在人的整个头部标本的8只耳朵上进行的。进行了乳突切除术和面部隐窝入路以进入中耳结构。比较了七个不同的条件,即FMT在圆形窗口小生境中的垂直或90度旋转位置,它们被结缔组织或紧密固定和听小骨链覆盖或覆盖。电刺激FMT,并使用激光多普勒振动法测量FMT,the骨头和海角的运动。结果:将FMT垂直于圆窗膜并用结缔组织覆盖的情况下,振动传递到耳蜗液的效果最好。与紧密固定状态相比,向内耳的能量传输高出45 dB,后者的能量传输最差。用结缔组织覆盖FMT可以改善能量转移,即使FMT的取向不是最佳。结论:FMT与圆窗的耦合方式对振动传递有很大影响。将FMT放置在圆形窗口中并用组织覆盖,将能量传递到内耳的频率最高。

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