Hummel J, Figl M, Birkfellner W, Bax M R, Shahidi R, Maurer C R, Bergmann H
Center of Biomedical Engineering and Physics, Medical University of Vienna, Austria. Ludwig-Boltzmann Institute of Nuclear Medicine, Vienna, Austria.
Phys Med Biol. 2006 May 21;51(10):N205-10. doi: 10.1088/0031-9155/51/10/N01. Epub 2006 Apr 26.
This note uses a published protocol to evaluate a newly released 6 degrees of freedom electromagnetic tracking system (Aurora, Northern Digital Inc.). A practice for performance monitoring over time is also proposed. The protocol uses a machined base plate to measure relative error in position and orientation as well as the influence of metallic objects in the operating volume. Positional jitter (E(RMS)) was found to be 0.17 mm +/- 0.19 mm. A relative positional error of 0.25 mm +/- 0.22 mm at 50 mm offsets and 0.97 mm +/- 1.01 mm at 300 mm offsets was found. The mean of the relative rotation error was found to be 0.20 degrees +/- 0.14 degrees with respect to the axial and 0.91 degrees +/- 0.68 degrees for the longitudinal rotation. The most significant distortion caused by metallic objects is caused by 400-series stainless steel. A 9.4 mm maximum error occurred when the rod was closest to the emitter, 10 mm away. The improvement compared to older generations of the Aurora with respect to accuracy is substantial.
本笔记使用已发表的协议来评估新发布的六自由度电磁跟踪系统(奥罗拉,北方数字公司)。还提出了一种随时间进行性能监测的方法。该协议使用加工的基板来测量位置和方向的相对误差以及操作空间中金属物体的影响。发现位置抖动(E(RMS))为0.17毫米±0.19毫米。在50毫米偏移量时相对位置误差为0.25毫米±0.22毫米,在300毫米偏移量时为0.97毫米±1.01毫米。发现相对于轴向的相对旋转误差平均值为0.20度±0.14度,纵向旋转为0.91度±0.68度。金属物体造成的最显著失真由400系列不锈钢引起。当杆最靠近发射器(距离10毫米)时,出现了9.4毫米的最大误差。与旧一代奥罗拉相比,在精度方面有显著提高。