...
首页> 外文期刊>IEEE Transactions on Medical Imaging >Intraoperative Magnetic Tracker Calibration Using a Magneto-Optic Hybrid Tracker for 3-D Ultrasound-Based Navigation in Laparoscopic Surgery
【24h】

Intraoperative Magnetic Tracker Calibration Using a Magneto-Optic Hybrid Tracker for 3-D Ultrasound-Based Navigation in Laparoscopic Surgery

机译:术中使用磁光混合追踪器进行磁性追踪器校准的腹腔镜手术中基于3D超声的导航

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

This paper describes a ultrasound (3D US) system that aims to achieve augmented reality (AR) visualization during laparoscopic surgery, especially for the liver. To acquire 3D US data of the liver, the tip of a laparoscopic ultrasound probe is tracked inside the abdominal cavity using a magnetic tracker. The accuracy of magnetic trackers, however, is greatly affected by magnetic field distortion that results from the close proximity of metal objects and electronic equipment, which is usually unavoidable in the operating room. In this paper, we describe a calibration method for intraoperative magnetic distortion that can be applied to laparoscopic 3D US data acquisition; we evaluate the accuracy and feasibility of the method by in vitro and in vivo experiments. Although calibration data can be acquired freehand using a magneto-optic hybrid tracker, there are two problems associated with this method - error caused by the time delay between measurements of the optical and magnetic trackers, and instability of the calibration accuracy that results from the uniformity and density of calibration data. A temporal calibration procedure is developed to estimate the time delay, which is then integrated into the calibration, and a distortion model is formulated by zeroth-degree to fourth-degree polynomial fitting to the calibration data. In the in vivo experiment using a pig, the positional error caused by magnetic distortion was reduced from 44.1 to 2.9 mm. The standard deviation of corrected target positions was less than 1.0 mm. Freehand acquisition of calibration data was performed smoothly using a magneto-optic hybrid sampling tool through a trocar under guidance by realtime 3-D monitoring of the tool trajectory; data acquisition time was less than 2 min. The present study suggests that our proposed method could correct for magnetic field distortion inside the patient''s abdomen during a laparoscopic procedure within a clinically permissible period of time, as well as ena-bling an accurate 3D US reconstruction to be obtained that can be superimposed onto live endoscopic images.
机译:本文介绍了一种超声(3D US)系统,旨在在腹腔镜手术(尤其是肝脏)中实现增强现实(AR)可视化。为了获取肝脏的3D US数据,使用磁跟踪仪在腹腔内跟踪腹腔镜超声探头的尖端。但是,由于金属物体和电子设备的靠近会导致磁场失真,因此,磁跟踪仪的精度会受到很大的影响,而这在手术室通常是不可避免的。在本文中,我们描述了一种用于术中磁畸变的校准方法,该方法可应用于腹腔镜3D US数据采集;我们通过体外和体内实验评估该方法的准确性和可行性。尽管可以使用磁光混合跟踪器徒手获取校准数据,但是与该方法相关的两个问题是:由于光学和磁性跟踪器之间的测量时间延迟而导致的误差;以及由于均匀性导致的校准精度不稳定和校准数据的密度。开发了时间校准程序以估计时间延迟,然后将其集成到校准中,并通过零级至四级多项式拟合校准数据来制定失真模型。在使用猪的体内实验中,由磁畸变引起的位置误差从44.1减小到2.9 mm。校正目标位置的标准偏差小于1.0毫米。使用磁光混合采样工具通过套管针在工具轨迹的实时3D监控下,顺利地徒手获取校准数据。数据采集​​时间少于2分钟。本研究表明,我们提出的方法可以在临床允许的时间内校正腹腔镜手术过程中患者腹部内部的磁场畸变,并能够获得准确的3D US重建图像。叠加到实时内窥镜图像上。

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