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首页> 外文期刊>European archives of oto-rhino-laryngology: Official journal of the European Federation of Oto-Rhino-Laryngological Societies (EUFOS) >Optimisation of the round window opening in cochlear implant surgery in wet and dry conditions: impact on intracochlear pressure changes
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Optimisation of the round window opening in cochlear implant surgery in wet and dry conditions: impact on intracochlear pressure changes

机译:干湿条件下人工耳蜗植入术中圆形窗口的优化:对耳蜗内压力变化的影响

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摘要

To preserve residual hearing in cochlear implant candidates, the atraumatic insertion of the cochlea electrode has become a focus of cochlea implant research. In a previous study, intracochlear pressure changes during the opening of the round window membrane were investigated. In the current study, intracochlear pressure changes during opening of the round window membrane under dry and transfluid conditions were investigated. Round window openings were performed in an artificial cochlear model. Intracochlear pressure changes were measured using a micro-optical pressure sensor, which was placed in the apex. Openings of the round window membrane were performed under dry and wet conditions using a cannula and a diode laser. Statistically significant differences in the intracochlear pressure changes were seen between the different methods used for opening of the round window membrane. Lower pressure changes were seen by opening the round window membrane with the diode laser than with the cannula. A significant difference was seen between the dry and wet conditions. The atraumatic approach to the cochlea is assumed to be essential for the preservation of residual hearing. Opening of the round window under wet conditions produce a significant advantage on intracochlear pressure changes in comparison to dry conditions by limiting negative outward pressure.
机译:为了保留候选的人工耳蜗,耳蜗电极的无创插入已成为人工耳蜗研究的重点。在先前的研究中,研究了圆形窗膜打开过程中的耳蜗内压力变化。在当前的研究中,研究了在干燥和流通条件下打开圆形窗膜期间的耳蜗内压力变化。在人工耳蜗模型中进行圆形窗开口。使用微光学压力传感器测量耳蜗内压力变化,该传感器放置在心尖。使用套管和二极管激光器在干燥和潮湿条件下进行圆窗膜的开口。在用于打开圆形窗膜的不同方法之间,耳蜗内压力变化具有统计学上的显着差异。用二极管激光器打开圆窗膜比用插管观察到较低的压力变化。在干燥和潮湿条件之间观察到显着差异。耳蜗的无创手术方法被认为对于保留残余听力至关重要。通过限制负向外压力,与干燥条件相比,在潮湿条件下打开圆形窗户在耳蜗内压力变化方面具有明显优势。

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