Capital Medical University, School of Biomedical Engineering, Youanmenwai, Beijing, ChinabChina Three Gorges University, First College of Clinical Medical Science, Equipment Department, Yichang City, China.
Capital Medical University, School of Biomedical Engineering, Youanmenwai, Beijing, ChinacCapital Medical University, Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Youanmenwai, Beijing, China.
J Biomed Opt. 2017 Jun 1;22(6):65005. doi: 10.1117/1.JBO.22.6.065005.
Optical tracking systems are widely adopted in surgical navigation. An optical tracking system is designed based on the principle of stereo vision with high-precision and low cost. This system uses optical infrared LEDs that are installed on the surgical instrument as markers and a near-infrared filter is added in front of the Bumblebee2 stereo camera lens to eliminate the interference of ambient light. The algorithm based on the region growing method is designed and used for the marker’s pixel coordinates’ extraction. In this algorithm, the singular points are eliminated and the gray centroid method is applied to solve the pixel coordinate of the marker’s center. Then, the marker’s matching algorithm is adopted and three-dimensional coordinates’ reconstruction is applied to derive the coordinates of the surgical instrument tip in the world coordinate system. In the simulation, the stability, accuracy, rotation tests, and the tracking angle and area range were carried out for a typical surgical instrument and the miniature surgical instrument. The simulation results show that the proposed optical tracking system has high accuracy and stability. It can meet the requirements of surgical navigation.
光学跟踪系统在手术导航中得到了广泛应用。本研究基于立体视觉原理设计了一种高精度、低成本的光学跟踪系统。该系统使用安装在手术器械上的光学红外 LED 作为标记,并在 Bumblebee2 立体相机镜头前增加近红外滤光片,以消除环境光的干扰。设计了基于区域生长法的算法,用于提取标记的像素坐标。在该算法中,消除了奇异点,并应用灰度质心法求解标记中心的像素坐标。然后,采用标记匹配算法,进行三维坐标重建,得出手术器械尖端在世界坐标系中的坐标。在模拟中,对典型手术器械和微型手术器械进行了稳定性、准确性、旋转测试以及跟踪角度和区域范围测试。模拟结果表明,所提出的光学跟踪系统具有高精度和稳定性,能够满足手术导航的要求。