【24h】

Position-history and spin-history artifacts in fMRI time-series

机译:FMRI时间序列中的位置历史和旋转历史工件

获取原文

摘要

What is the impact of the spin history and position history on signal intensity after the alignment of acquired volumes? This question arises in many fMRI studies. We will focus on spin-history artefacts generated by the position-history of the scanned object. In fMRI an object is driven to steady state by applying a few dummy scans at the start of each measurement. A change in object position will disrupt the tissue's steady state magnetization. The disruption will propagate to the next few acquired volumes until a steady state is reached again. The variables which are involved in changing the longitudinal magnetization are: the shape and the position of the slice profiles, the times at which RF pulses occurred, the equilibrium magnetization map and the T_1 map. Knowledge of these variables enables the prediction of those situations and the locations where the spin-history may compromise the fMRI analysis. In this paper we present a simulation of spin-history artefacts. The simulation shows that these effects, following a displacement, are similar to the transient period at the beginning of the measurement. Introducing gaps between the acquired slices increases these artefacts.
机译:自旋历史和位置历史对获取卷对齐后的信号强度的影响是什么?许多FMRI研究中出现了这个问题。我们将专注于扫描对象的位置历史生成的旋转历史文物。在FMRI中,通过在每个测量开始时应用一些虚拟扫描来驱动到稳态。物体位置的变化会破坏组织的稳态磁化。中断将在接下来的几个获得的卷中传播,直到再次达到稳定状态。涉及改变纵向磁化的变量是:切片轮廓的形状和位置,RF脉冲发生的时间,平衡磁化图和T_1映射。对这些变量的知识使得能够预测这些情况和旋转历史可能损害FMRI分析的位置。在本文中,我们展示了旋转历史艺术品的模拟。仿真表明,在位移之后,这些效果类似于测量开始时的瞬态时段。在所获取的切片之间引入间隙增加了这些人工制品。

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