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A Buyer's Guide to Electromagnetic Tracking Systems for Clinical Applications

机译:临床应用电磁跟踪系统购买者指南

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摘要

When choosing an Electromagnetic Tracking System (EMTS) for image-guided procedures, it is desirable for the system to be usable for different procedures and environments. Several factors influence this choice. To date, the only factors that have been studied extensively, are the accuracy and the susceptibility of electromagnetic tracking systems to distortions caused by ferromagnetic materials. In this paper we provide a holistic overview of the factors that should be taken into account when choosing an EMTS. These factors include: the system's refresh rate, the number of sensors that need to be tracked, the size of the navigated region, system interaction with the environment, can the sensors be embedded into the tools and provide the desired transformation data, and tracking accuracy and robustness. We evaluate the Aurora EMTS (Northern Digital Inc., Waterloo, Ontario, Canada) and the 3D Guidance EMTS with the flat-panel and the short-range field generators (Ascension Technology Corp., Burlington, Vermont, USA) in three clinical environments. We show that these systems are applicable to specific procedures or in specific environments, but that, no single system is currently optimal for all environments and procedures we evaluated.
机译:当选择用于图像引导程序的电磁跟踪系统(EMTS)时,希望该系统可用于不同的程序和环境。有几个因素影响此选择。迄今为止,已被广泛研究的唯一因素是电磁跟踪系统对铁磁材料引起的畸变的准确性和敏感性。在本文中,我们提供了选择EMTS时应考虑的因素的整体概述。这些因素包括:系统的刷新率,需要跟踪的传感器数量,导航区域的大小,系统与环境的交互作用,可以将传感器嵌入工具中并提供所需的转换数据以及跟踪精度和鲁棒性。我们在三种临床环境中使用平板和短距离场发生器(Ascension Technology Corp.,伯灵顿,美国佛蒙特州,美国)评估了Aurora EMTS(加拿大安大略省滑铁卢的Northern Digital Inc.)和3D制导EMTS。 。我们表明这些系统适用于特定的过程或特定的环境,但是,目前还没有哪个系统对我们评估的所有环境和过程均是最佳的。

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