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Quantification of AC electromagnetic tracking system accuracy in a CT scanner environment

机译:CT扫描仪环境中交流电磁跟踪系统精度的量化

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摘要

The purpose of this study was to quantify the effects of a computed tomography (CT) scanner environment on the positional accuracy of an AC electromagnetic tracking system, the second generation NDI Aurora. A three-axis positioning robot was used to move an electromagnetically tracked needle above the CT table throughout a 30cm by 30cm axial plane sampled in 2.5cm steps. The corresponding position data was captured from the Aurora and was registered to the positioning system data using a rigid body transformation minimizing the least squares L2-norm. Data was sampled at varying distances from the CT gantry (three feet, two feet, and one foot) and with the CT table in a nominal position and lowered by 10cm. A coordinate system was defined with the x axis normal to the CT table and the origin at the center of the CT table, and the z axis spanning the table in the lateral direction with the origin at the center of the CT table. In this coordinate system, the positional relationships of each sampled point, the CT table, and the Aurora field generator are clearly defined. This allows error maps to be displayed in accurate spatial relationship to the CT scanner as well as to a representative patient anatomy. By quantifying the distortions in relation to the position of CT scanner components and the Aurora field generator, the optimal working field of view and recommended guidelines for operation can be determined such that targeting inside human anatomy can be done with reasonable expectations of desired performance.
机译:这项研究的目的是量化计算机断层扫描(CT)扫描仪环境对交流电磁跟踪系统(第二代NDI Aurora)的位置精度的影响。使用三轴定位机器人将电磁跟踪的针头移动到CT台上方的整个30cm x 30cm轴向平面中,并以2.5cm的步距采样。从极光中捕获相应的位置数据,并使用最小化最小二乘L2-范数的刚体变换将其注册到定位系统数据中。在距CT机架不同距离(3英尺,2英尺和1英尺)处采样数据,并且CT工作台处于标称位置并降低10厘米。定义了一个坐标系,其x轴垂直于CT工作台,原点位于CT工作台的中心,而z轴横穿该工作台,其横向方向横跨该工作台,其原点位于CT工作台的中心。在此坐标系中,每个采样点,CT表和Aurora场发生器的位置关系都得到了明确定义。这允许以与CT扫描仪以及代表性患者解剖结构精确的空间关系显示错误图。通过量化与CT扫描仪组件和Aurora场发生器的位置有关的畸变,可以确定最佳的工作视野和推荐的操作指南,从而可以在对人体预期的性能进行合理预期的情况下进行人体内部解剖。

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