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Proof-of-concept of a laser mounted endoscope for touch-less navigated procedures

机译:激光安装内窥镜的概念麽导航程序

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Background and Objectives During navigated procedures a tracked pointing device is used to define target structures in the patient to visualize its position in a registered radiologic data set. When working with endoscopes in minimal invasive procedures, the target region is often difficult to reach and changing instruments is disturbing in a challenging, crucial moment of the procedure. We developed a device for touch less navigation during navigated endoscopic procedures. Materials and Methods A laser beam is delivered to the tip of a tracked endoscope angled to its axis. Thereby the position of the laser spot in the video-endoscopic images changes according to the distance between the tip of the endoscope and the target structure. A mathematical function is defined by a calibration process and is used to calculate the distance between the tip of the endoscope and the target. The tracked tip of the endoscope and the calculated distance is used to visualize the laser spot in the registered radiologic data set. Results In comparison to the tracked instrument, the touch less target definition with the laser spot yielded in an over and above error of 0.12 mm. The overall application error in this experimental setup with a plastic head was 0.61 ± 0.97 mm (95% CI -1.3 to +2.5 mm). Conclusion Integrating a laser in an endoscope and then calculating the distance to a target structure by image processing of the video endoscopic images is accurate. This technology eliminates the need for tracked probes intraoperatively and therefore allows navigation to be integrated seamlessly in clinical routine. However, it is an additional chain link in the sequence of computer-assisted surgery thus influencing the application error. Lasers Surg. Med. 45:377-382, 2013.
机译:在导航背景和目标程序用来跟踪定位设备在病人定义目标结构想象它的位置在一个注册放射数据集。侵入性程序,通常是目标区域难以达到和变化的工具令人不安的挑战,关键的时刻这个过程。在导航内镜少导航程序。交付的跟踪内窥镜轴的角度。激光点在video-endoscopic图像的变化据的顶端之间的距离内窥镜和目标结构。数学函数被定义为一个校准过程和用于计算距离的尖端内窥镜和目标之间的关系。内窥镜和的追踪技巧用于可视化计算距离激光点在注册放射数据集。结果跟踪仪器相比,少接触目标定义的激光发现了在一个超过误差为0.12毫米。整个应用程序错误实验装置和塑料头是0.61±0.97毫米(95% CI -1.3 + 2.5毫米)。整合在内窥镜激光,然后计算距离的目标结构视频内窥镜图像的图像处理是准确的。跟踪调查处理,因此可以无缝地集成导航临床常规。计算机辅助的链条的序列手术从而影响应用程序错误。激光Surg.地中海45:377 - 382,2013。

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