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一种软件解决方案,用于动态减少图像引导手术中电磁跟踪系统的金属变形。

A software solution to dynamically reduce metallic distortions of electromagnetic tracking systems for image-guided surgery.

机构信息

Chair for Medical Telematics and Medical Technology, Institute of Medical Technology, Otto-von Guericke Universität Magdeburg, G09-324, Universitätsplatz 2, 39016, Magdeburg, Germany.

Research Group of Computer-Assisted Surgery, Institute of Simulation and Graphics, Otto-von-Guericke Universität Magdeburg, G29-209, Universitätsplatz 2, 39016, Magdeburg, Germany.

出版信息

Int J Comput Assist Radiol Surg. 2017 Sep;12(9):1621-1633. doi: 10.1007/s11548-017-1546-0. Epub 2017 Mar 3.

Abstract

PURPOSE

Electromagnetic tracking systems (EMTS) have achieved a high level of acceptance in clinical settings, e.g., to support tracking of medical instruments in image-guided interventions. However, tracking errors caused by movable metallic medical instruments and electronic devices are a critical problem which prevents the wider application of EMTS for clinical applications.

METHODS

We plan to introduce a method to dynamically reduce tracking errors caused by metallic objects in proximity to the magnetic sensor coil of the EMTS. We propose a method using ramp waveform excitation based on modeling the conductive distorter as a resistance-inductance circuit. Additionally, a fast data acquisition method is presented to speed up the refresh rate.

RESULTS

With the current approach, the sensor's positioning mean error is estimated to be 3.4, 1.3 and 0.7 mm, corresponding to a distance between the sensor and center of the transmitter coils' array of up to 200, 150 and 100 mm, respectively. The sensor pose error caused by different medical instruments placed in proximity was reduced by the proposed method to a level lower than 0.5 mm in position and [Formula: see text] in orientation. By applying the newly developed fast data acquisition method, we achieved a system refresh rate up to approximately 12.7 frames per second.

CONCLUSIONS

Our software-based approach can be integrated into existing medical EMTS seamlessly with no change in hardware. It improves the tracking accuracy of clinical EMTS when there is a metallic object placed near the sensor coil and has the potential to improve the safety and outcome of image-guided interventions.

摘要

目的

电磁跟踪系统(EMTS)在临床环境中已得到高度认可,例如,用于支持在图像引导介入中跟踪医疗仪器。然而,可移动金属医疗仪器和电子设备引起的跟踪误差是一个关键问题,这阻止了 EMTS 在更广泛的临床应用中的应用。

方法

我们计划引入一种方法来动态减少 EMTS 磁传感器线圈附近金属物体引起的跟踪误差。我们提出了一种基于将导电干扰器建模为电阻-电感电路的斜坡波形激励方法。此外,还提出了一种快速数据采集方法来提高刷新速率。

结果

使用当前方法,估计传感器的定位平均误差为 3.4、1.3 和 0.7 毫米,分别对应于传感器和发射器线圈阵列中心之间的距离高达 200、150 和 100 毫米。通过所提出的方法,将放置在附近的不同医疗仪器引起的传感器位置误差降低到低于 0.5 毫米的位置和 [公式:见文本] 的方向。通过应用新开发的快速数据采集方法,我们实现了系统刷新速率高达约 12.7 帧/秒。

结论

我们的基于软件的方法可以无缝集成到现有的医疗 EMTS 中,而无需更改硬件。当传感器线圈附近有金属物体时,它可以提高临床 EMTS 的跟踪精度,并有可能提高图像引导介入的安全性和效果。

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