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Hybrid tracking system for flexible endoscopes

机译:柔性内窥镜的混合跟踪系统

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摘要

With the miniaturization of electromagnetic tracking systems (EMTS) the range of possible applications in image guided therapy was extending. A diameter smaller than 1 mm allows for mounting these sensors into the working channel of flexible endoscopes for navigation within the body. Knowing the exact position of the instrument with respect to the patient's position preoperative CT or MR images can simplify and ease navigation during various interventions. The Aurora EMTS seems to be an ideal choice for this purpose. However, using this system exhibits an important limitation: the sensor offers just 5 degrees of freedom (DOF) which means that rotations round the axis of the sensor cannot be measured. To overcome this restriction we used an additional optical tracking system (OTS) which is calibrated to deliver the missing DOF. To evaluate the suitability of our new navigation system we measured the Fiducial Registration Error (FRE) of the diverse registrations and the Target Registration Error (TRE) for the complete transformation from the US space to the CT space. The FRE for the ultrasound calibration amounted to 3.2 mm±2.2 mm, resulting from 10 calibration procedures. For the transformation from the OTS reference system to the EMTS emitter space we found an average FRE of 0.8 mm ±0.2 mm. The FRE for the CT registration was 1.0 mm ±0.3 mm. The TRE was found to be 5.5 mm ± 3.2 mm.
机译:随着电磁跟踪系统(EMTS)的小型化,图像引导治疗的可能应用范围正在扩大。小于1毫米的直径允许将这些传感器安装到柔性内窥镜的工作通道中,以便在体内导航。在术前CT或MR图像中了解仪器相对于患者位置的准确位置可以简化并简化各种干预过程中的导航。为此,Aurora EMTS似乎是理想的选择。但是,使用该系统存在一个重要的局限性:传感器仅提供5个自由度(DOF),这意味着无法测量围绕传感器轴的旋转。为了克服这一限制,我们使用了额外的光学跟踪系统(OTS),该系统经过校准可以提供丢失的自由度。为了评估我们新导航系统的适用性,我们测量了各种注册的基准注册错误(FRE)和目标注册错误(TRE),以便从美国空间完全转换为CT空间。超声波校准的FRE总计为3.2 mm±2.2 mm,这是由10个校准程序得出的。对于从OTS参考系统到EMTS发射器空间的转换,我们发现平均FRE为0.8 mm±0.2 mm。 CT定位的FRE为1.0 mm±0.3 mm。发现TRE为5.5mm±3.2mm。

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