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MONTE-CARLO-SIMULATION FOR ACCURACY ASSESSMENT OF A SINGLE CAMERA NAVIGATION SYSTEM

机译:蒙特卡罗 - 用于精度评估单个相机导航系统的仿真

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The paper describes a simulation-based optimization of an optical tracking system that is used as a 6DOF navigation system for neurosurgery. Compared to classical system used in clinical navigation, the presented system has two unique properties: firstly, the system will be miniaturized and integrated into an operating microscope for neurosurgery; secondly, due to miniaturization a single camera approach has been designed. Single camera techniques for 6DOF measurements show a special sensitivity against weak geometric configurations between camera and object. In addition, the achievable accuracy potential depends significantly on the geometric properties of the tracked objects (locators). Besides quality and stability of the targets used on the locator, their geometric configuration is of major importance. In the following the development and investigation of a simulation program is presented which allows for the assessment and optimization of the system with respect to accuracy. Different system parameters can be altered as well as different scenarios indicating the operational use of the system. Measurement deviations are estimated based on the Monte-Carlo method. Practical measurements validate the correctness of the numerical simulation results.
机译:本文介绍了一种基于光学跟踪系统的仿真优化,其用作神经外科的6dof导航系统。与临床导航中使用的古典系统相比,所呈现的系统具有两个独特的特性:首先,该系统将小型化并集成到神经外科的操作显微镜中;其次,由于小型化,设计了单一的摄像机方法。 6DOF测量的单个摄像机技术显示出对相机和对象之间的弱几何配置的特殊灵敏度。此外,可实现的精度电位显着取决于跟踪物体的几何特性(定位器)。除了定位器上使用的目标的质量和稳定性,它们的几何配置具有重要意义。在下文中,介绍了仿真程序的开发和调查,其允许对系统的评估和优化进行准确性。可以改变不同的系统参数以及指示系统操作使用的不同场景。基于Monte-Carlo方法估计测量偏差。实际测量验证了数值模拟结果的正确性。

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