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首页> 外文期刊>Journal of medical imaging and radiation oncology >Geometric accuracy in three-dimensional coordinates of Leksell stereotactic skull frame with wide-bore 1.5-T MRI compared with conventional 1.5-T MRI
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Geometric accuracy in three-dimensional coordinates of Leksell stereotactic skull frame with wide-bore 1.5-T MRI compared with conventional 1.5-T MRI

机译:与传统的1.5-T MRI相比,宽口径1.5-T MRI的Leksell立体定向颅骨框架三维坐标的几何精度

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摘要

The use of 1.5-tesla (T) magnetic resonance (MR) imaging with a wide and simultaneously short bore enhances patient comfort compared with traditional 1.5-T MR imaging and is becoming increasingly available in stereotactic radiosurgery treatment planning. However, the geometric accuracy seems unavoidably worse in wide-bore MR imaging than in conventional MR imaging. We assessed the geometric distortion of the stereotactic image attached on a Leksell skull frame in conventional and wide-bore 1.5-T MR imaging. Two kinds of acrylic phantoms were placed on the skull frame and were scanned using computed tomography (CT) and conventional and wide-bore 1.5-T MR imaging. The three-dimensional coordinates on both MR imaging were compared with those on CT. Deviations of measured coordinates at selected points (x = 50, 100, 150 mm; y = 50, 100, 150 mm) were indicated on different axial planes (z = 50, 75, 100, 125, 150 mm). The differences of coordinates were less than 1.0 mm in the entire treatable area for conventional MR imaging. With the large bore system, the differences of the coordinates were less than 1.0 mm around the center but substantially exceeded 1.0 mm in the peripheral regions. Further study is needed to increase the geometric accuracy of wide-bore MR imaging for stereotactic radiosurgery treatment planning.
机译:与传统的1.5-T MR成像相比,具有宽且同时短孔径的1.5特斯拉(T)磁共振(MR)成像的使用与传统的1.5-T MR成像相比可提高患者的舒适度,并且在立体定向放射外科手术治疗计划中越来越多。但是,宽口径MR成像的几何精度似乎不可避免地比常规MR成像差。我们评估了传统和宽口径1.5-T MR成像中Leksell颅骨框架上附着的立体定向图像的几何变形。将两种丙烯酸模型放在颅骨框架上,并使用计算机断层扫描(CT)以及常规和宽口径1.5-T MR成像进行扫描。将两个MR成像上的三维坐标与CT上的三维坐标进行了比较。在不同的轴向平面(z = 50、75、100、125、150 mm)上指示了在选定点(x = 50、100、150 mm; y = 50、100、150 mm)处测量坐标的偏差。在常规MR成像的整个可治疗区域中,坐标差小于1.0 mm。在大孔径系统中,中心点的坐标差小于1.0 mm,而周边区域的坐标差则大大超过1.0 mm。需要进一步研究以增加用于立体定向放射外科治疗计划的大口径MR成像的几何精度。

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