Near-Infrared Camera Calibration for Optical Surgical Navigation

被引:0
作者
Ken Cai
Rongqian Yang
Qinyong Lin
Sujuan Liu
Huazhou Chen
Shanxing Ou
Wenhua Huang
Jing Zhou
机构
[1] Zhongkai University of Agriculture and Engineering,School of Information Science and Technology
[2] South China University of Technology,Department of Biomedical Engineering
[3] Guilin University of Technology,College of Science
[4] General Hospital of Guangzhou Military Command of PLA,Department of Radiology
[5] Southern Medical University,School of Basic Medical Sciences
来源
Journal of Medical Systems | 2016年 / 40卷
关键词
Optical surgical navigation; Camera calibration; Near-infrared;
D O I
暂无
中图分类号
学科分类号
摘要
Near-infrared optical tracking devices, which are important components of surgical navigation systems, need to be calibrated for effective tracking. The calibration results has a direct influence on the tracking accuracy of an entire system. Therefore, the study of calibration techniques is of theoretical significance and practical value. In the present work, a systematic calibration method based on movable plates is established, which analyzes existing calibration theories and implements methods using calibration reference objects. First, the distortion model of near-infrared cameras (NICs) is analyzed in the implementation of this method. Second, the calibration images from different positions and orientations are used to establish the required linear equations. The initial values of the NIC parameters are calculated with the direct linear transformation method. Finally, the accurate internal and external parameters of the NICs are obtained by conducting nonlinear optimization. Analysis results show that the relative errors of the left and right NICs in the tracking system are 0.244 and 0.282 % for the focal lengths and 0.735 and 1.111 % for the principal points, respectively. The image residuals of the left and right image sets are both less than 0.01 pixel. The standard error of the calibration result is lower than 1, and the measurement error of the tracking system is less than 0.3 mm. The experimental data show that the proposed method of calibrating NICs is effective and can generate favorable calibration results.
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