首页> 美国卫生研究院文献>Journal of Radiation Research >Geometric accuracy of 3D coordinates of the Leksell stereotactic skull frame in 1.5 Tesla- and 3.0 Tesla-magnetic resonance imaging: a comparison of three different fixation screw materials
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Geometric accuracy of 3D coordinates of the Leksell stereotactic skull frame in 1.5 Tesla- and 3.0 Tesla-magnetic resonance imaging: a comparison of three different fixation screw materials

机译:1.5特斯拉和3.0特斯拉磁共振成像中Leksell立体定向头骨框架的3D坐标的几何精度:三种不同固定螺钉材料的比较

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摘要

We assessed the geometric distortion of 1.5-Tesla (T) and 3.0-T magnetic resonance (MR) images with the Leksell skull frame system using three types of cranial quick fixation screws (QFSs) of different materials—aluminum, aluminum with tungsten tip, and titanium—for skull frame fixation. Two kinds of acrylic phantoms were placed on a Leksell skull frame using the three types of screws, and were scanned with computed tomography (CT), 1.5-T MR imaging and 3.0-T MR imaging. The 3D coordinates for both strengths of MR imaging were compared with those for CT. The deviations of the measured coordinates at selected points (x = 50, 100 and 150; y = 50, 100 and 150) were indicated on different axial planes (z = 50, 75, 100, 125 and 150). The errors of coordinates with QFSs of aluminum, tungsten-tipped aluminum, and titanium were <1.0, 1.0 and 2.0 mm in the entire treatable area, respectively, with 1.5 T. In the 3.0-T field, the errors with aluminum QFSs were <1.0 mm only around the center, while the errors with tungsten-tipped aluminum and titanium were >2.0 mm in most positions. The geometric accuracy of the Leksell skull frame system with 1.5-T MR imaging was high and valid for clinical use. However, the geometric errors with 3.0-T MR imaging were larger than those of 1.5-T MR imaging and were acceptable only with aluminum QFSs, and then only around the central region.
机译:我们使用三种不同材料的颅骨快速固定螺钉(QFS),分别使用铝,铝制带钨尖端的颅骨快速固定螺钉(QFS),通过Leksell颅骨框架系统评估了1.5-Tesla(T)和3.0-T磁共振(MR)图像的几何变形。和钛-用于固定头骨框架。使用三种类型的螺钉将两种丙烯酸模型放在Leksell头骨框架上,并用计算机断层扫描(CT),1.5-T MR成像和3.0-T MR成像进行扫描。 MR成像的两种强度的3D坐标与CT的3D坐标进行了比较。在不同的轴向平面(z = 50、75、100、125和150)上指示了在选定点(x = 50、100和150; y = 50、100和150)处测量坐标的偏差。铝,钨铝和钛的QFS坐标在整个可处理区域中的误差分别为<1.0、1.0和2.0 mm,1.5T。在3.0-T领域中,铝QFS的误差为<仅在中心周围1.0毫米,而在大多数位置,钨尖铝和钛的误差大于2.0毫米。具有1.5-T MR成像的Leksell颅骨框架系统的几何精度很高,可用于临床。但是,3.0-T MR成像的几何误差大于1.5-T MR成像的几何误差,并且仅对于铝质QFS才可接受,然后仅在中心区域附近才可接受。

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