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Flexible microsensor technology for real-time navigation tracking in balloon sinus ostial dilation

机译:灵活的微传感器技术,用于球囊窦口扩张的实时导航跟踪

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Background: Microsensor navigation has the potential to aid balloon sinus ostial dilation by providing real-time tracking of balloon devices within the complex anatomy of the sinonasal cavities. Objective: This feasibility study evaluated the incorporation of a new microsensor technology into a flexible guidewire for use with current instruments in balloon sinus ostial dilation. Methods: A retrospective study was conducted to include seven men and one woman (age range, 33‐68 years), who underwent balloon sinus ostial dilation with flexible microsensor navigation in the operating room setting. All the procedures were performed at target sinuses with the patient under general anesthesia, in conjunction with subsequent endoscopic sinus surgery. Results: Balloon dilation was attempted at the maxillary (n = 3), frontal (n = 14), and sphenoid (n = 1) sinuses. In all the cases, the surgical navigation system displayed the flexible wire tip as it was advanced to the target sinus ostia; this visual feedback for wire position guided the balloon placement. Successful balloon dilation with assistance of flexible microsensor navigation was performed on most sinuses, except a single frontal sinus with adjacent type 2 frontal cells. Conclusion: Flexible navigation technology may be combined with balloon sinus technology to facilitate localization of instruments in the sinus anatomy. Additional optimization of both the device and software technology is warranted.
机译:背景:微传感器导航通过在鼻窦腔的复杂解剖结构中提供对气球装置的实时跟踪,有潜力帮助球囊窦扩张。目的:这项可行性研究评估了将新的微传感器技术并入柔性导丝中,以与当前的球囊窦口扩张术一起使用。方法:进行回顾性研究,包括7名男性和1名女性(年龄范围33-68岁),他们在手术室环境中接受了气球窦扩张术,并采用灵活的微传感器导航。所有手术均在全身麻醉下在目标鼻窦处进行,并随后进行内窥镜鼻窦手术。结果:尝试对上颌窦(n = 3),额窦(n = 14)和蝶骨(n = 1)进行球囊扩张。在所有情况下,手术导航系统都会在将柔性线尖推进到目标窦口时显示出该线尖。电线位置的视觉反馈指导气球的放置。除单个额窦与相邻的2型额叶细胞外,大多数鼻窦均在柔性微传感器导航的帮助下成功进行了球囊扩张。结论:灵活的导航技术可以与球囊窦技术相结合,以促进器械在窦解剖结构中的定位。确保对设备和软件技术进行额外的优化。

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