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内耳阻抗对中耳声音传递功能的影响。

Influence of inner ear impedance on middle ear sound transfer functions.

作者信息

Zhai Sijia, Bornitz Matthias, Eßinger Till Moritz, Chen Zhaoyu, Neudert Marcus

机构信息

Technische Universität Dresden, Faculty of Medicine Carl Gustav Carus, Department of Otorhinolaryngology Head and Neck Surgery, Ear Research Center Dresden (ERCD), Fetscherstraße 74, 01307, Dresden, Germany.

出版信息

Heliyon. 2024 Mar 12;10(6):e27758. doi: 10.1016/j.heliyon.2024.e27758. eCollection 2024 Mar 30.

Abstract

INTRODUCTION

For experimental studies on sound transfer in the middle ear, it may be advantageous to perform the measurements without the inner ear. In this case, it is important to know the influence of inner ear impedance on the middle ear transfer function (METF). Previous studies provide contradictory results in this regard. With the current study, we investigate the influence of inner ear impedance in more detail and find possible reasons for deviations in the previous studies.

METHODS

11 fresh frozen temporal bones were prepared in our study. The factors related to inner ear impedance, including round window membrane stiffness, cochleostomy, cochlea fluid and cochlea destruction were involved in the experimental design. After measuring in the intact specimen as a reference (step 1), the round window membrane was punctured (step 2), then completely removed (step 3). The cochleostomy was performed (step 4) before the cochlear fluid was carefully suctioned through scala tympani (step 5) and scala vestibuli (step 6). Finally, cochlea was destroyed by drilling (step 7). Translational and rotational movement of the stapes footplate were measured and calculated at each step. The results of the steps were compared to quantify the effect of inner ear impedance changing related to the process of cochlear drainage.

RESULTS

As the inner ear impedance decreases from step 1 to 7, the amplitudes of the METF curves at each frequency gradually increase in general. From step 6 on, the measured METF are significantly different with respect to the intact group at high frequencies above 3 kHz. The differences are frequency dependent. However, the significant decrement of rotational motion appears at the frequencies above 4.5 kHz from the step 5.

CONCLUSION

This study confirms the influence of inner ear impedance on METF only at higher frequencies (≥3 kHz). The rotational motions are more sensitive to the drainage of fluid at the higher frequency. Study results that found no influence of cochlea impedance may be due to incomplete drainage of the cochlea.

摘要

引言

对于中耳声音传递的实验研究,在没有内耳的情况下进行测量可能具有优势。在这种情况下,了解内耳阻抗对中耳传递函数(METF)的影响非常重要。以往的研究在这方面给出了相互矛盾的结果。通过本研究,我们更详细地研究了内耳阻抗的影响,并找出了以往研究中出现偏差的可能原因。

方法

在我们的研究中准备了11个新鲜冷冻的颞骨。实验设计涉及与内耳阻抗相关的因素,包括圆窗膜刚度、蜗窗造口术、耳蜗液和耳蜗破坏。在作为参考的完整标本中进行测量后(步骤1),穿刺圆窗膜(步骤2),然后将其完全移除(步骤3)。在通过鼓阶(步骤5)和前庭阶(步骤6)小心抽吸耳蜗液之前进行蜗窗造口术(步骤4)。最后,通过钻孔破坏耳蜗(步骤7)。在每个步骤测量并计算镫骨足板的平移和旋转运动。比较各步骤的结果,以量化与耳蜗引流过程相关的内耳阻抗变化的影响。

结果

随着内耳阻抗从步骤1到步骤7降低,每个频率下METF曲线的幅度总体上逐渐增加。从步骤6开始,在高于3kHz的高频处,测量得到的METF与完整组相比有显著差异。这些差异与频率有关。然而,从步骤5开始,在高于4.5kHz的频率处出现了旋转运动的显著下降。

结论

本研究证实内耳阻抗仅在较高频率(≥3kHz)对METF有影响。旋转运动在较高频率下对液体引流更敏感。那些发现耳蜗阻抗没有影响的研究结果可能是由于耳蜗引流不完全所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fc2/10958710/01da0b57dab1/gr1.jpg

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