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Evaluation of Electromagnetic Tracking for Stereoscopic Augmented Reality Laparoscopic Visualization

机译:立体增强现实腹腔镜可视化电磁跟踪评估

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摘要

Without the requirement of line-of-sight, electromagnetic (EM) tracking is increasingly studied and used in clinical applications. We designed experiments to evaluate a commercial EM tracking system in three situations: using the EM sensor by itself; fixing the sensor onto the handle of a stereoscopic (i.e., 3D) laparoscope; and placing the sensor on the outside surface of the head of a laparoscopic ultrasound (LUS) transducer. The 3D laparoscope and the LUS transducer are core elements in our stereoscopic laparoscopic augmented reality visualization system, which overlays real-time LUS image on real-time 3D laparoscopic video for minimally invasive laparoscopic surgery. Jitter error, positional static and dynamic accuracies were assessed with the use of LEGO~® basic bricks and building plates. The results show that the EM tracking system being tested yields satisfactory accuracy results and the attachment of the sensor to the planned positions on the probes is possible.
机译:在没有视线要求的情况下,越来越多地研究电磁跟踪(EM)并将其用于临床应用中。我们设计了在以下三种情况下评估商用EM跟踪系统的实验:单独使用EM传感器;将传感器固定在立体(即3D)腹腔镜的手柄上;并将传感器放置在腹腔镜超声(LUS)换能器的头部的外表面上。 3D腹腔镜和LUS换能器是我们的立体腹腔镜增强现实可视化系统的核心元素,该系统将实时LUS图像叠加在实时3D腹腔镜视频上,用于微创腹腔镜手术。使用LEGO〜®基础砖和建筑板评估了抖动误差,位置静态和动态精度。结果表明,所测试的EM跟踪系统可产生令人满意的精度结果,并且可以将传感器安装到探头上的计划位置。

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