首页> 外文会议>International conference on information processing in medical imaging >Retrospective Estimation of the Susceptibility Driven Field Map for Distortion Correction in Echo Planar Imaging
【24h】

Retrospective Estimation of the Susceptibility Driven Field Map for Distortion Correction in Echo Planar Imaging

机译:回声平面成像的磁化率驱动场图的畸变校正的回顾性估计。

获取原文

摘要

Echo planar imaging (EPI) sequence used for acquiring functional MRI (fMRI) time series data provides the advantage of high temporal resolution, but also is highly sensitive to the magnetic field inhomogeneity resulting in geometric distortions. A static field-inhomogeneity map measured before or after the fMRI scan to correct for such distortions does not account for magnetic field changes due to the head motion during the time series acquisition. In practice, the field map dynamically changes with head motion during the scan and leads to variations in the geometric distortion. We model in this work the field inhomogeneity with the object and the scanner dependent terms. The object-specific term varies with the object's magnetic susceptibility and orientation, i.e., head position with respect to B_0. Thus, the simple transformation of the acquired field may not yield an accurate field map. We assume that the scanner-specific field remains unchanged and independent of the head motion. Our approach in this study is to retrospectively estimate the object's magnetic susceptibility (x) map from an observed high-resolution static field map using an estimator derived from a probability density function of non-uniform noise. This approach is capable of finding the susceptibility map regardless of the wrapping effect. A dynamic field map at each head position can be estimated by applying a rigid body transformation to the estimated x-map and the 3-D susceptibility voxel convolution (SVC) which is a physics-based discrete convolution model for computing x-induced field inhomogeneity.
机译:用于获取功能性MRI(fMRI)时间序列数据的回波平面成像(EPI)序列具有高时间分辨率的优势,但对导致几何变形的磁场不均匀性也非常敏感。在fMRI扫描之前或之后为校正此类畸变而测量的静态场不均匀性图无法解决在时间序列获取过程中由于头部运动而引起的磁场变化。实际上,场图在扫描过程中会随着头部运动而动态变化,并导致几何变形的变化。我们在这项工作中对对象和扫描仪相关项的字段不均匀性进行建模。特定于对象的术语随对象的磁化率和取向即相对于B_0的头部位置而变化。因此,所获取场的简单变换可能不会产生准确的场图。我们假设扫描仪特定的字段保持不变,并且与头部运动无关。我们在这项研究中的方法是使用从非均匀噪声的概率密度函数得出的估计量,从观察到的高分辨率静态场图中回顾性地估计对象的磁化率(x)图。不管包裹效应如何,该方法都能够找到磁化率图。可以通过将刚体变换应用于估算的x映射图和3-D磁化体素卷积(SVC)来估算每个头部位置的动态场图,该3D三维体素卷积是一种基于物理的离散卷积模型,用于计算x感应场的不均匀性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号