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Fluoroscopy based accuracy assessment of electromagnetic tracking

机译:基于透视基于电磁跟踪的精度评估

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Tracking organ motion due to respiration is important to enable precise interventions in the regions of the abdomen and thorax. Respiratory induced motion in these regions may limit the accuracy of interventions which do not employ some type of tracking. One method of tracking organ motion is to use a predictive model based on external tracking that is correlated to internal motion. This approach depends on the accuracy of the model used for correlating the two motions. Ideally, one would track the internal motion directly. We are investigating the use of electromagnetically tracked fiducials to enable real-time tracking of internal organ motion. To investigate the in-vivo accuracy of this approach we propose to use stereo-fluoroscopy. In this paper we show that stereo-fluoroscopy is accurate enough to serve as a validation method, displaying sub-millimetric accuracy (maximal error of 0.66mm). We study the effect of the bi-plane fluoroscopes on the electromagnetic systems' accuracy, and show that placing the bi-plane fluoroscopes in a typical intra-operative setup has a negligible effect on the tracking accuracy (maximal error of 1.4mm). Finally, we compare the results of stereo-fluoroscopy tracking and electromagnetic tracking of needles in an animal study, showing a mean (std) difference of 1.4 (1.5)mm between modalities. These results show that stereo-fluoroscopy can be used in conjunction with electromagnetic tracking with minimal effect, and that the electromagnetic system is accurate enough for motion tracking of internal organs.
机译:跟踪器官运动由于呼吸而言是在腹部区域和胸部的精确干预方面非常重要。这些地区的呼吸诱导运动可能限制不采用某种类型跟踪的干预的准确性。跟踪器官运动的一种方法是使用基于与内部运动相关的外部跟踪的预测模型。这种方法取决于用于关联两个运动的模型的准确性。理想情况下,人们会直接跟踪内部运动。我们正在调查电磁跟踪基准的使用,使内器运动的实时跟踪。为了研究这种方法的体内准确性,我们建议使用立体透视。在本文中,我们显示立体透视尺寸足够精确,以用作验证方法,显示亚毫升精度(最大误差为0.66mm)。我们研究了双面荧光镜对电磁系统的精度的影响,并显示将双面荧光镜放置在典型的术中,对跟踪精度的效果可忽略不计(最大误差为1.4mm)。最后,我们比较了动物研究中的立体透视跟踪和针刺电磁跟踪的结果,显示了模式之间的平均值(STD)差1.4(1.5)毫米。这些结果表明,立体荧光透视能够与电磁跟踪一起使用,具有最小效果,并且电磁系统足够精确,以便移动跟踪内器官。

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