IHU Strasbourg, Strasbourg, France.
University College Cork, Cork, Ireland.
Int J Comput Assist Radiol Surg. 2017 Jun;12(6):1059-1067. doi: 10.1007/s11548-017-1568-7. Epub 2017 Mar 29.
Electromagnetic tracking is the gold standard for instrument tracking and navigation in the clinical setting without line of sight. Whilst clinical platforms exist for interventional bronchoscopy and neurosurgical navigation, the limited flexibility and high costs of electromagnetic tracking (EMT) systems for research investigations mitigate against a better understanding of the technology's characterisation and limitations. The Anser project provides an open-source implementation for EMT with particular application to image-guided interventions.
This work provides implementation schematics for our previously reported EMT system which relies on low-cost acquisition and demodulation techniques using both National Instruments and Arduino hardware alongside MATLAB support code. The system performance is objectively compared to other commercial tracking platforms using the Hummel assessment protocol.
Positional accuracy of 1.14 mm and angular rotation accuracy of [Formula: see text] are reported. Like other EMT platforms, Anser is susceptible to tracking errors due to eddy current and ferromagnetic distortion. The system is compatible with commercially available EMT sensors as well as the Open Network Interface for image-guided therapy (OpenIGTLink) for easy communication with visualisation and medical imaging toolkits such as MITK and 3D Slicer.
By providing an open-source platform for research investigations, we believe that novel and collaborative approaches can overcome the limitations of current EMT technology.
在无视线的临床环境中,电磁跟踪是仪器跟踪和导航的黄金标准。虽然存在用于介入性支气管镜检查和神经外科导航的临床平台,但电磁跟踪 (EMT) 系统的灵活性有限且成本高昂,不利于更好地了解该技术的特性和局限性。Anser 项目为 EMT 提供了一个开源实现,特别适用于图像引导的干预。
这项工作为我们之前报道的 EMT 系统提供了实现原理图,该系统依赖于使用 National Instruments 和 Arduino 硬件以及 MATLAB 支持代码的低成本采集和解调技术。使用 Hummel 评估协议客观地比较了系统性能与其他商业跟踪平台。
报告的位置精度为 1.14 毫米,角旋转精度为 [Formula: see text]。与其他 EMT 平台一样,Anser 容易受到涡流和铁磁变形引起的跟踪误差的影响。该系统与商用 EMT 传感器以及用于与可视化和医学成像工具包(如 MITK 和 3D Slicer)进行轻松通信的开放式网络接口 for image-guided therapy (OpenIGTLink) 兼容。
通过为研究调查提供开源平台,我们相信新的和协作的方法可以克服当前 EMT 技术的局限性。