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SURGICAL TOOL ALIGNMENT BY LASER GUIDANCE USING FLUOROSCOPIC-BASED NAVIGATION TECHNIQUE: A System Implementation and Validation Study

机译:通过基于荧光透视的导航技术进行激光引导的手术工具对齐:系统实现和验证研究

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This paper provides a novel method for intuitive and CT-less surgical navigation based on fluoroscopic-based navigation and laser guidance technology for minimal invasive orthopaedic surgery. This method does not require intra-operative registration of three-dimensional surface model derived from pre-operative CT/MRI volumes and is able to project surgical path planed intra-operatively onto the patient's skin directly. In this paper, implementation of this method and basic in vitro guidance accuracy validation were performed. Tool insertion path planning was performed on three 2D images from a pinhole imaging source taken at different incident angles. A 3D insertion pathway was generated and projected using two laser beams. Our Fluorolaser system has a planning accuracy of 1.07±0.60 mm, 0.73±0.38 degrees and an overall guidance accuracy of 1.11±0.62 mm, 0.80±0.68 degrees. These results demonstrate that the proposed method has great potentials to ensure accurate and intuitive surgical procedures.
机译:本文提供了一种基于荧光透视的导航和激光引导技术的直观和CT较少手术导航的新方法,用于最小的侵入性整形外科手术。该方法不需要衍生自术前CT / MRI体积的三维表面模型的帧内注册,并且能够将手术路径直接投射到患者皮肤上。在本文中,进行了该方法的实现和基本的体外引导精度验证。在从不同入射角拍摄的针孔成像源上的三个2D图像上执行工具插入路径规划。使用两个激光束产生和投影3D插入路径。我们的含氟弹簧系统的规划精度为1.07±0.60 mm,0.73±0.38度,总引导精度为1.11±0.62 mm,0.80±0.68度。这些结果表明,该方法具有很大的潜力,可确保准确和直观的外科手术。

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