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A Bronchoscope Localization Method Using an Augmented Reality Co-Display of Real Bronchoscopy Images with a Virtual 3D Bronchial Tree Model

机译:使用虚拟3D支气管树模型的使用增强现实共同显示真正的支气管镜图像的支气管镜定位方法

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摘要

In recent years, Image-Guide Navigation Systems (IGNS) have become an important tool for various surgical operations. In the preparations for planning a surgical path, verifying the location of a lesion, etc., it is an essential tool; in operations such as bronchoscopy, which is the procedure for the inspection and retrieval of diagnostic samples for lung-related surgeries, it is even more so. The IGNS for bronchoscopy uses 2D-based images from a flexible bronchoscope to navigate through the bronchial airways in order to reach the targeted location. In this procedure, the accurate localization of the scope becomes very important, because incorrect information could potentially cause a surgeon to mistakenly direct the scope down the wrong passage. It would be a great aid for the surgeon to be able to visualize the bronchoscope images alongside the current location of the bronchoscope. For this purpose, in this paper, we propose a novel registration method to match real bronchoscopy images with virtual bronchoscope images from a 3D bronchial tree model built using computed tomography (CT) image stacks in order to obtain the current 3D position of the bronchoscope in the airways. This method is a combination of a novel position-tracking method using the current frames from the bronchoscope and the verification of the position of the real bronchoscope image against an image extracted from the 3D model using an adaptive-network-based fuzzy inference system (ANFIS)-based image matching method. Experimental results show that the proposed method performs better than the other methods used in the comparison.
机译:近年来,图像导航导航系统(ICGS)已成为各种外科手术的重要工具。在规划手术路径的准备中,验证病变等的位置,这是一个必不可少的工具;在支气管镜检查等操作中,这是肺相关手术的检查和检索诊断样本的程序,它更为含量。支气管镜检查的IMPS使用来自柔性支气管镜的2D基图像,以透过支气管气道以达到目标位置。在此过程中,范围的准确本地化变得非常重要,因为信息不正确可能导致外科医生错误地将范围误导错误的段落。外科医生能够能够与支气管镜的当前位置保持可视化支气管镜图像是一个巨大的辅助。为此目的,在本文中,我们提出了一种新的注册方法,将真实支气管镜图像与使用计算机断层扫描(CT)图像堆叠建造的3D支气管树模型匹配真正的支气管镜图像,以便获得支气管镜的当前3D位置气道。该方法是使用来自支气管镜的当前帧的新颖位置跟踪方法的组合,以及使用基于自适应网络的模糊推理系统(ANFIS)验证真实支气管图像对从3D模型提取的图像的图像的验证(ANFIS基于图像匹配方法。实验结果表明,该方法的表现优于比较中使用的其他方法。

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