首页> 外文会议>Conference on Physics of Medical Imaging >Automated 3D coronary sinus catheter detection using a scanning-beam digital x-ray system
【24h】

Automated 3D coronary sinus catheter detection using a scanning-beam digital x-ray system

机译:自动化3D冠状动脉窦导管检测使用扫描束数字X射线系统

获取原文
获取外文期刊封面目录资料

摘要

Scanning-beam digital x-ray (SBDX) is an inverse geometry x-ray fluoroscopy system capable of tomosynthesis-based 3D tracking of catheter electrodes concurrent with fluoroscopic display. To facilitate respiratory motion-compensated 3D catheter tracking, an automated coronary sinus (CS) catheter detection algorithm for SBDX was developed. The technique uses the 3D localization capability of SBDX and prior knowledge of the catheter shape. Candidate groups of points representing the CS catheter are obtained from a 3D shape-constrained search. A cost function is then minimized over the groups to select the most probable CS catheter candidate. The algorithm was implemented in MATLAB and tested offline using recorded image sequences of a chest phantom containing a CS catheter, ablation catheter, and fiducial clutter. Fiducial placement was varied to create challenging detection scenarios. Table panning and elevation was used to simulate motion. The CS catheter detection method had 98.1% true positive rate and 100% true negative rate in 2755 frames of imaging. Average processing time was 12.7 ms/frame on a PC with a 3.4 GHz CPU and 8 GB memory. Motion compensation based on 3D CS catheter tracking was demonstrated in a moving chest phantom with a fixed CS catheter and an ablation catheter pulled along a fixed trajectory. The RMS error in the tracked ablation catheter trajectory was 1.41 mm, versus 10.35 mm without motion compensation. A computationally efficient method of automated 3D CS catheter detection has been developed to assist with motion-compensated 3D catheter tracking and registration of 3D cardiac models to tracked catheters.
机译:扫描束数字X射线(SBDX)是一种逆几何X射线透视系统,其能够与荧光透视显示器的基于Tomosynesis的3D跟踪。为了促进呼吸运动补偿的3D导管跟踪,开发了一种用于SBDX的自动冠状动脉窦(CS)导管检测算法。该技术采用SBDX的3D定位能力和导管形状的先验知识。代表CS导管的候选点组是从3D形状受限的搜索获得的。然后,在组中最小化成本函数以选择最可能的CS导管候选者。该算法在MATLAB中实现,并使用含有CS导管,消融导管和基准杂波的胸部幻影的记录图像序列来测试离线。提供基准放置以创造具有挑战性的检测方案。表平移和高程用于模拟运动。 CS导管检测方法具有98.1%的真实阳性率和2755帧成像帧的100%真实率。 PC上的平均处理时间为12.7 ms /帧,带有3.4 GHz CPU和8 GB内存。基于3D CS导管跟踪的运动补偿在移动的胸部虚线中进行了说明,其中固定的CS导管和沿固定轨迹拉动的消融导管。跟踪消融导管轨迹中的rms误差为1.41 mm,而不是10.35 mm,没有运动补偿。已经开发了一种计算上有效的自动化3D CS导管检测方法,以帮助跟踪导管的3D心脏模型的运动补偿3D导管跟踪和登记。

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