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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >A method for fast 3D tracking using tuned fiducial markers and a limited projection reconstruction FISP (LPR-FISP) sequence.
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A method for fast 3D tracking using tuned fiducial markers and a limited projection reconstruction FISP (LPR-FISP) sequence.

机译:一种使用调谐基准标记和有限投影重建FISP(LPR-FISP)序列进行3D快速跟踪的方法。

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摘要

This work demonstrates the feasibility of using wireless, tuned fiducial markers with a limited projection reconstruction-fast imaging with steady-state free precession sequence (LPR-FISP) to accurately obtain tracking information necessary for interactive scan plane selection in magnetic resonance imaging (MRI). The position and orientation of a rigid interventional device can be uniquely determined from the 3D coordinates of three fiducial markers mounted in a known configuration on the device. Three fiducial markers were tuned to the proton resonant frequency in a 0.2T open MR scanner and mounted to the surface of a cylindrical water phantom. An LPR-FISP sequence was developed to suppress the water phantom signal while preserving that of the fiducial markers through a nonselective low-tip-angle excitation and a dephaser gradient applied prior to data acquisition. A localization algorithm was developed to accurately calculate the 3D coordinates of the fiducial markers using four LPR-FISP projections in two orthogonal scan planes. The sequence repetition time (TR = 21 msec) and the limited projection set resulted in fast LPR-FISP coordinate acquisition times of approximately 170 msec with an accuracy (max error) of 3 mm on a 0.2T MR system. This fast, accurate tracking method provides the fundamental technology for interactive MRI scan plane definition for rigid interventional devices without the need for stereotactic cameras or reference frames. Copyright 2001 Wiley-Liss, Inc.
机译:这项工作证明了使用无线,可调基准标记物和有限的投影重建快速成像以及稳态自由进动序列(LPR-FISP)的可行性,以准确获得磁共振成像(MRI)交互式扫描平面选择所需的跟踪信息。刚性介入设备的位置和方向可以根据以已知配置安装在设备上的三个基准标记的3D坐标唯一地确定。在0.2T开放式MR扫描仪中,将三个基准标记调谐到质子共振频率,并将其安装到圆柱水模上。开发了LPR-FISP序列以抑制水体模信号,同时通过非选择性的低尖角激励和在数据采集之前应用的移相器梯度来保留基准标记的水体模信号。开发了一种定位算法,可以使用两个正交扫描平面中的四个LPR-FISP投影来准确计算基准标记的3D坐标。序列重复时间(TR = 21毫秒)和有限的投影集导致在0.2T MR系统上快速LPR-FISP坐标获取时间约为170毫秒,精度(最大误差)为3毫米。这种快速,准确的跟踪方法提供了用于刚性介入设备的交互式MRI扫描平面定义的基本技术,而无需使用立体定向相机或参考框架。版权所有2001 Wiley-Liss,Inc.

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