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Through the Eustachian Tube and Beyond: A New Miniature Robotic Endoscope to See Into The Middle Ear

机译:通过咽鼓管及其他:一种新型微型机器人内窥镜可看到中耳

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摘要

This paper presents a novel miniature robotic endoscope that is small enough to pass through the Eustachian tube and provide visualization of the middle ear (ME). The device features a miniature bending tip previously conceived of as a small-scale robotic wrist that has been adapted to carry and aim a small chip-tip camera and fiber optic light sources. The motivation for trans-Eustachian tube ME inspection is to provide a natural-orifice-based route to the ME that does not require cutting or lifting the eardrum, as is currently required. In this paper, we first perform an analysis of the ME anatomy and use a computational design optimization platform to derive the kinematic requirements for endoscopic inspection of the ME through the Eustachian tube. Based on these requirements, we fabricate the proposed device and use it to demonstrate the feasibility of ME inspection in an anthropomorphic model, i.e. a 3D-printed ME phantom generated from patient image data. We show that our prototype provides > 74% visibility coverage of the sinus tympani, a region of the ME crucial for diagnosis, compared to an average of only 6.9% using a straight, non-articulated endoscope through the Eustachian Tube.
机译:本文介绍了一种新颖的微型机器人内窥镜,该内窥镜足够小,可以穿过咽鼓管并提供中耳(ME)的可视化效果。该设备具有一个微型弯曲尖端,该尖端以前被认为是小型机械手腕,已经适合携带和瞄准小型芯片尖端照相机和光纤光源。经咽鼓管ME检查的动机是提供一种通向ME的基于自然孔的路径,该路径不需要像目前所要求的那样切割或提起鼓膜。在本文中,我们首先对ME解剖结构进行分析,并使用计算设计优化平台得出通过咽鼓管对ME进行内窥镜检查的运动学要求。基于这些要求,我们制造了拟议的设备并将其用于证明拟人化模型中ME检查的可行性,即从患者图像数据生成的3D打印ME体模。我们展示出,我们的原型提供了对鼻窦鼓膜(对诊断至关重要的ME区域)的可见度覆盖度> 74%,而使用笔直的非铰接内窥镜通过咽鼓管的平均覆盖率仅为6.9%。

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