首页> 外文会议>6th International Conference on Medical Image Computing and Computer-Assisted Intervention (MICCAI 2003) Pt.II; Nov 15-18, 2003; Montreal, Canada >Integration of Projection Profile Matching into Clinical MR Scanner System for Real-Time Organ Tracking and Image Registration
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Integration of Projection Profile Matching into Clinical MR Scanner System for Real-Time Organ Tracking and Image Registration

机译:将投影轮廓匹配集成到临床MR扫描仪系统中,以进行实时器官跟踪和图像配准

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摘要

We propose integrating projection profile matching into a 1.5 Tesla clinical magnetic resonance (MR) scanner system to track a target organ in real-time for MRI guided therapy. As soon as a scanner acquires echoes, MR echo data are transferred immediately from the scanner to an "on-the-fly" processing computer that executes projection profile matching, image reconstruction, image registration and motion correction, The system provides respiratory motion information about a target organ with a frame rate of up to 10 Hz and delay time of 200 ms. We report measurements of a phantom and a volunteer to evaluate the delay and the accuracy of the motion measurement with respect to the true motion, and feasibility. The study compares projection profile matching-based measurement and a "golden-standard" obtained by tracking a phantom with a video camera. The error was 1.5 mm with a delay of 200 ms. We tracked the moving liver of a volunteer, and two studies demonstrates that the system can be applied to clinical use.
机译:我们建议将投影轮廓匹配集成到1.5 Tesla临床磁共振(MR)扫描仪系统中,以实时跟踪目标器官,以进行MRI指导治疗。扫描仪获取回波后,MR回波数据立即从扫描仪传输到“即时”处理计算机,该计算机执行投影轮廓匹配,图像重建,图像配准和运动校正。该系统提供有关呼吸运动的信息目标器官的帧频高达10 Hz,延迟时间为200毫秒。我们报告了幻像和志愿者的测量结果,以评估延迟和运动测量相对于真实运动的准确性以及可行性。该研究将基于投影轮廓匹配的测量结果与通过摄像机跟踪幻像获得的“黄金标准”进行了比较。误差为1.5 mm,延迟为200 ms。我们跟踪了志愿者的活动肝脏,两项研究表明该系统可以应用于临床。

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