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一种用于耳科的新型多功能模块化微型内窥镜。

A novel multipurpose modular mini-endoscope for otology.

作者信息

Bozzato Alessandro, Bozzato Victoria, Al Kadah Basel, Schick Bernhard

机构信息

Department of Otorhinolaryngology, Saarland University Hospital, Kirrberger Strasse, 66421, Homburg/Saar, Germany,

出版信息

Eur Arch Otorhinolaryngol. 2014 Dec;271(12):3341-8. doi: 10.1007/s00405-014-3295-9. Epub 2014 Oct 16.

Abstract

Transtympanic access to the round window membrane (RWM) for drug delivery is in the focus of otology and has stimulated development of various endoscopes. These endoscopes are tasked to enable best visualization at a low diameter and to offer a working channel for various instruments. The specific aspect of sterilization is a major issue especially in regard to the diameter of the endoscope with its integrated working channel. We evaluated a new multi-purpose modular semi-rigid optical fiber endoscope (10,000 pixel resolution) for minimal invasive middle ear endoscopy focusing on access to the RWM and micro instruments in 12 cadaver specimens. Microscopic visualization was compared to endoscopy. With the modular mini ear endoscope (MMEE) we were able to visualize the RWM in 3 specimens directly and in 8 specimens after removal of a mucous membrane using micro instruments. A bony overhang prevented visualization of the RWM in one case. The endoscope enabled minimal invasive RWM access initially in a higher number of cases compared to microscope investigation. The designed MMEE is suited to access transtympanic the round window membrane even in situations of an obstructed round window niche. The modular concept of the endoscope is attractive for different types of indications, various instruments and with regard to the aspects of sterilization. Experiences in humans are the next necessary step to define the possible role of this endoscope in otology.

摘要

经鼓膜进入圆窗膜(RWM)进行药物输送是耳科学的研究重点,并推动了各种内窥镜的发展。这些内窥镜的任务是在较小直径下实现最佳可视化,并为各种器械提供工作通道。消毒的具体方面是一个主要问题,特别是对于带有集成工作通道的内窥镜的直径而言。我们评估了一种新型多用途模块化半刚性光纤内窥镜(分辨率为10000像素),用于微创中耳内窥镜检查,重点是在12个尸体标本中进入RWM和使用微型器械。将显微镜可视化与内窥镜检查进行了比较。使用模块化微型耳内窥镜(MMEE),我们能够直接在3个标本中可视化RWM,并在8个标本中使用微型器械去除粘膜后可视化RWM。在1例中,骨悬垂物妨碍了RWM的可视化。与显微镜检查相比,该内窥镜最初能够在更多病例中实现微创进入RWM。所设计的MMEE即使在圆窗龛受阻的情况下也适合经鼓膜进入圆窗膜。内窥镜的模块化概念对于不同类型的适应症、各种器械以及消毒方面都具有吸引力。在人体上进行试验是确定这种内窥镜在耳科学中可能作用的下一步必要举措。

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