Hong Cheolpyo, Lee Dong-Hoon, Han Bong Soo
Center for Medical Metrology, Korea Research Institute of Standards and Science, Daejeon, Republic of Korea.
Center for Medical Metrology, Korea Research Institute of Standards and Science, Daejeon, Republic of Korea; Department of Radiological Science, College of Health Science, Yonsei University, Kwangwon-do, Republic of Korea.
Magn Reson Imaging. 2014 Jul;32(6):786-90. doi: 10.1016/j.mri.2014.02.007. Epub 2014 Feb 10.
Open-configuration magnetic resonance imaging (MRI) systems are becoming increasingly desirable for musculoskeletal imaging and image-guided radiotherapy because of their non-claustrophobic configuration. However, geometric image distortion in large fields-of-view (FOV) due to field inhomogeneity and gradient nonlinearity hinders the practical applications of open-type MRI. We demonstrated the use of geometric distortion correction for increasing FOV in open MRI. Geometric distortion was modeled and corrected as a global polynomial function. The appropriate polynomial order was identified as the minimum difference between the coordinates of control points in the distorted MR image space and those predicted by polynomial modeling. The sixth order polynomial function was found to give the optimal value for geometric distortion correction. The area of maximum distortion was<1 pixel with an FOV of 285mm. The correction performance error was increased at most 1.2% and 2.9% for FOVs of 340mm and~400mm compared with the FOV of 285mm. In particular, unresolved distortion was generated by local deformation near the gradient coil center.
开放式磁共振成像(MRI)系统因其无幽闭恐惧症的结构,在肌肉骨骼成像和图像引导放射治疗方面越来越受到青睐。然而,由于磁场不均匀性和梯度非线性,大视野(FOV)中的几何图像失真阻碍了开放式MRI的实际应用。我们展示了使用几何失真校正来增加开放式MRI中的FOV。几何失真被建模并校正为全局多项式函数。合适的多项式阶数被确定为失真MR图像空间中控制点坐标与多项式建模预测坐标之间的最小差值。发现六阶多项式函数可给出几何失真校正的最佳值。在285mm的FOV下,最大失真区域<1像素。与285mm的FOV相比,340mm和~400mm的FOV校正性能误差最多增加1.2%和2.9%。特别是,在梯度线圈中心附近的局部变形会产生未解决的失真。