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一种微型电磁位置跟踪器的评估

Evaluation of a miniature electromagnetic position tracker.

作者信息

Hummel Johann, Figl Michael, Kollmann Christian, Bergmann Helmar, Birkfellner Wolfgang

机构信息

Department of Biomedical Engineering and Physics, General Hospital, University of Vienna, Austria.

出版信息

Med Phys. 2002 Oct;29(10):2205-12. doi: 10.1118/1.1508377.

Abstract

The advent of miniaturized electromagnetic digitizers opens a variety of potential clinical applications for computer aided interventions using flexible instruments; endoscopes or catheters can easily be tracked within the body. With respect to the new applications, the systematic distortions induced by various materials such as closed metallic loops, wire guides, catheters, and ultrasound scan heads were systematically evaluated in this paper for a new commercial tracking system. We employed the electromagnetic tracking system Aurora (Mednetix/CH, NDI/Can); data were acquired using the serial port of a PC running SuSE Linux 7.1 (SuSE, Gmbh, Nürnberg). Objects introduced into the digitizer volume included wire loops of different diameters, wire guides, optical tracking tools, an ultrasonic (US) scan head, an endoscope with radial ultrasound scan head and various other objects used in operating rooms and interventional suites. Beyond this, we determined the influence of a C-arm fluoroscopy unit. To quantify the reliability of the system, the miniaturized sensor was mounted on a nonmetallic measurement rack while the transmitter was fixed at three different distances within the digitizer range. The tracker was shown to be more sensitive to distortions caused by materials close to the emitter (average distortion error 13.6 mm +/- 16.6 mm for wire loops positioned at a distance between 100 mm and 200 mm from the emitter). Distortions caused by materials near the sensor (distances smaller than 100 mm) are small (typical error 2.2 mm +/- 1.9 mm). The C-arm fluoroscopy unit caused considerable distortions and limits the reliability of the tracker (distortion error 18.6 mm +/- 24.9 mm). Distortions resulting from the US scan head are high at distances smaller than about 100 mm from the emitter. The distortions also increase when the scan head is positioned horizontally and close to the sensor (average error 4.1 mm +/- 1.5 mm when the scan head is positioned within a distance of 100 mm from the sensor). The distortions are slightly higher when the ultrasound machine is switched on. We also evaluated the influence of common medical instruments on distance measurements. For these measurements the average deviation from the known distance of 200 mm amounted to 3.0 mm +/- 1.5 mm (undistorted distance measurement 1.5 mm +/- 0.3 mm). The deviations also depend on the relative orientation between emitter and sensor. The results demonstrate that the miniature tracking system opens up new perspectives with regard to surgery applications where a flexible instrument is to be tracked within the body. Significant distortions caused by metallic objects only occur in the worst cases, for example, in the presence of a closed, unisiolated wire loop or a C-arm fluorescence unit close to the emitter and which can be avoided by suitable usage.

摘要

小型电磁数字化仪的出现为使用柔性器械的计算机辅助干预开辟了各种潜在的临床应用;内窥镜或导管可在体内轻松实现跟踪。针对这些新应用,本文针对一种新型商用跟踪系统,系统地评估了各种材料(如封闭金属环、导丝、导管和超声扫描头)所引起的系统失真。我们采用了电磁跟踪系统Aurora(Mednetix/瑞士,NDI/加拿大);数据通过运行SuSE Linux 7.1(SuSE公司,德国纽伦堡)的个人计算机的串口采集。引入数字化仪空间的物体包括不同直径的金属丝环、导丝、光学跟踪工具、超声(US)扫描头、带有径向超声扫描头的内窥镜以及手术室和介入室中使用的各种其他物体。除此之外,我们还确定了C形臂荧光透视仪的影响。为了量化系统的可靠性,将小型化传感器安装在非金属测量架上,同时将发射器固定在数字化仪范围内的三个不同距离处。结果表明,跟踪器对靠近发射器的材料所引起的失真更为敏感(对于距离发射器100毫米至200毫米之间的金属丝环,平均失真误差为13.6毫米±16.6毫米)。靠近传感器的材料(距离小于100毫米)所引起的失真较小(典型误差为2.2毫米±1.9毫米)。C形臂荧光透视仪会引起相当大的失真,并限制了跟踪器的可靠性(失真误差为18.6毫米±24.9毫米)。当超声扫描头距离发射器小于约100毫米时,其引起的失真较高。当扫描头水平放置且靠近传感器时,失真也会增加(当扫描头距离传感器100毫米以内时,平均误差为4.1毫米±1.5毫米)。超声设备开启时,失真会略高一些。我们还评估了常见医疗器械对距离测量的影响。对于这些测量,与已知200毫米距离的平均偏差为3.0毫米±1.5毫米(无失真距离测量为1.5毫米±0.3毫米)。偏差还取决于发射器和传感器之间的相对方向。结果表明,微型跟踪系统为在体内跟踪柔性器械的手术应用开辟了新的前景。金属物体仅在最坏的情况下才会引起显著失真,例如,存在靠近发射器的封闭、未隔离的金属丝环或C形臂荧光设备,而通过适当使用可以避免这种情况。

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