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一种用于具有可变变焦和聚焦功能的光学透视头戴式手术显微镜的全自动校准方法。

A fully automated calibration method for an optical see-through head-mounted operating microscope with variable zoom and focus.

作者信息

Figl Michael, Ede Christopher, Hummel Johann, Wanschitz Felix, Ewers Rolf, Bergmann Helmar, Birkfellner Wolfgang

机构信息

Center for Biomedical Engineering and Physics, Medical University of Vienna, A-1090 Vienna, Austria.

出版信息

IEEE Trans Med Imaging. 2005 Nov;24(11):1492-9. doi: 10.1109/TMI.2005.856746.

Abstract

Ever since the development of the first applications in image-guided therapy (IGT), the use of head-mounted displays (HMDs) was considered an important extension of existing IGT technologies. Several approaches to utilizing HMDs and modified medical devices for augmented reality (AR) visualization were implemented. These approaches include video-see through systems, semitransparent mirrors, modified endoscopes, and modified operating microscopes. Common to all these devices is the fact that a precise calibration between the display and three-dimensional coordinates in the patient's frame of reference is compulsory. In optical see-through devices based on complex optical systems such as operating microscopes or operating binoculars-as in the case of the system presented in this paper-this procedure can become increasingly difficult since precise camera calibration for every focus and zoom position is required. We present a method for fully automatic calibration of the operating binocular Varioscope M5 AR for the full range of zoom and focus settings available. Our method uses a special calibration pattern, a linear guide driven by a stepping motor, and special calibration software. The overlay error in the calibration plane was found to be 0.14-0.91 mm, which is less than 1% of the field of view. Using the motorized calibration rig as presented in the paper, we were also able to assess the dynamic latency when viewing augmentation graphics on a mobile target; spatial displacement due to latency was found to be in the range of 1.1-2.8 mm maximum, the disparity between the true object and its computed overlay represented latency of 0.1 s. We conclude that the automatic calibration method presented in this paper is sufficient in terms of accuracy and time requirements for standard uses of optical see-through systems in a clinical environment.

摘要

自从图像引导治疗(IGT)的首批应用出现以来,头戴式显示器(HMD)的使用就被视为现有IGT技术的一项重要扩展。人们实施了几种利用HMD和改良医疗设备进行增强现实(AR)可视化的方法。这些方法包括视频透视系统、半透明镜子、改良内窥镜和改良手术显微镜。所有这些设备的共同之处在于,显示器与患者参考坐标系中的三维坐标之间必须进行精确校准。在基于复杂光学系统(如手术显微镜或手术双目镜)的光学透视设备中——就像本文介绍的系统那样——由于需要针对每个聚焦和变焦位置进行精确的相机校准,这一过程可能会变得越来越困难。我们提出了一种针对手术双目镜Varioscope M5 AR在可用的全范围变焦和聚焦设置下进行全自动校准的方法。我们的方法使用一种特殊的校准图案、一个由步进电机驱动的线性导轨以及特殊的校准软件。在校准平面中发现叠加误差为0.14 - 0.91毫米,小于视场的1%。使用本文介绍的电动校准装置,我们还能够评估在移动目标上查看增强图形时的动态延迟;发现由于延迟导致的空间位移最大在1.1 - 2.8毫米范围内,真实物体与其计算叠加之间的视差表示延迟为0.1秒。我们得出结论,本文提出的自动校准方法在临床环境中光学透视系统的标准使用方面,在准确性和时间要求方面是足够的。

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