...
首页> 外文期刊>Medical Physics >Calibration of time-of-flight cameras for accurate intraoperative surface reconstruction
【24h】

Calibration of time-of-flight cameras for accurate intraoperative surface reconstruction

机译:校准飞行时间摄像机,用于准确术中的表面重建

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Purpose: In image-guided surgery (IGS) intraoperative image acquisition of tissue shape, motion, and morphology is one of the main challenges. Recently, time-of-flight (ToF) cameras have emerged as a new means for fast range image acquisition that can be used for multimodal registration of the patient anatomy during surgery. The major drawbacks of ToF cameras are systematic errors in the image acquisition technique that compromise the quality of the measured range images. In this paper, we propose a calibration concept that, for the first time, accounts for all known systematic errors affecting the quality of ToF range images. Laboratory and in vitro experiments assess its performance in the context of IGS. Methods: For calibration the camera-related error sources depending on the sensor, the sensor temperature and the set integration time are corrected first, followed by the scene-specific errors, which are modeled as function of the measured distance, the amplitude and the radial distance to the principal point of the camera. Accounting for the high accuracy demands in IGS, we use a custom-made calibration device to provide reference distance data, the cameras are calibrated too. To evaluate the mitigation of the error, the remaining residual error after ToF depth calibration was compared with that arising from using the manufacturer routines for several state-of-the-art ToF cameras. The accuracy of reconstructed ToF surfaces was investigated after multimodal registration with computed tomography (CT) data of liver models by assessment of the target registration error (TRE) of markers introduced in the livers. Results: For the inspected distance range of up to 2 m, our calibration approach yielded a mean residual error to reference data ranging from 1.5 ?4.3 mm for the best camera to 7.2 ?11.0 mm. When compared to the data obtained from the manufacturer routines, the residual error was reduced by at least 78% from worst calibration result to most accurate manufacturer data. After registration of the CT data with the ToF data, the mean TRE ranged from 3.7 ?2.1 mm for point-based and 5.7 ?1.9 mm for surface-based registration for the best camera to 6.2 ?3.4 and 11.1 ?2.8 mm, respectively. Compared to data provided by the manufacturer, the mean TRE decreased by 8%-60% for point-based and by 18%-74% for surface-based registration. Conclusions: Using the proposed calibration approach improved the measurement accuracy of all investigated ToF cameras. Although evaluated in the context of intraoperative image acquisition, the proposed calibration procedure can easily be applied to other medical applications using ToF cameras, such as patient positioning or respiratory motion tracking in radiotherapy.
机译:目的:在图像引导的手术组织形状,运动和形态(IGS)术中图像采集的主要挑战之一。最近,时间飞行(TOF)相机已经逐渐成为快速范围图像获取的新手段,可以在手术过程中用于病人解剖的多式联运登记。的飞行时间相机的主要缺点是在图像采集技术的系统误差妥协测量范围图像的质量。在本文中,我们提出了一个校准概念,首次,占影响飞行时间范围图像的质量所有已知的系统误差。实验室和体外实验评估其在IGS的情况下的表现。方法:为了校准取决于传感器的照相机相关的误差源,传感器温度与设定积分时间是第一校正,随后由场景特定的错误,这被建模为所测量的距离的函数,振幅和径向到照相机的主点的距离。占IGS高精度的要求,我们使用一个特制的校准装置,以提供基准距离数据,摄像机被校准过。为了评估错误的缓解,之后在TOF深度校准剩余的残余误差与相比,从使用生产商例程几个国家的最先进的ToF摄像机产生。的通过在肝脏引入标记的目标配准误差(TRE)的评估肝模型的计算机断层扫描(CT)数据多峰登记后重构的ToF表面进行了研究的准确性。结果:达2米的检查的距离范围内,我们的校准方法得到的平均残差到基准数据从1.54.3毫米最佳照相机至7.211.0毫米?。当与从制造商例程所获得的数据,减少的残余误差由至少78%从最坏的校准结果,以最精确的制造商的数据。与TOF数据的CT数据的登记后,平均TRE介于3.7〜2.1毫米点为基础的和5.7?1.9毫米用于最好的相机基于表面的配准至6.2?分别为3.4和11.1?2.8毫米。相比于由制造商提供的数据,平均为TRE基于表面的配准减少8%-60%为点为基础,由18%-74%。结论:使用提出的校准方法提高了全体调查飞行时间相机的测量精度。虽然在术中图像采集的上下文中计算的,所提出的校准程序可以很容易地被应用到如在放射治疗患者定位或呼吸运动跟踪使用TOF相机其它医疗应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号