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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Automated correction of spin-history related motion artefacts in fMRI: Simulated and phantom data
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Automated correction of spin-history related motion artefacts in fMRI: Simulated and phantom data

机译:自动校正功能磁共振成像中与自旋历史相关的运动伪像:模拟和幻像数据

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摘要

This paper concerns the problem of correcting spin-history artefacts in fMRI data. We focus on the influence of through-plane motion on the history of magnetization. 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 new steady state is reached. In this paper we present a simulation of spin-history effects, experimental data, and an automatic two-step algorithm for detecting and correcting spin-history artefacts. The algorithm determines the steady-state distribution of all voxels in a given slice and indicates which voxels need a spin-history correction. The spin-history correction is meant to be applied before standard realignment procedures. To obtain experimental data a special phantom and an MRI compatible motion system were designed. The effect of motion on spin-history is presented for data obtained using this phantom inside a 1.5-T MRI scanner. We show that the presented algorithm is capable of detecting the occurrence of a displacement, and it determines which voxels need a spin-history correction. The results of the phantom study show good agreement with the simulations.
机译:本文涉及校正fMRI数据中的旋转历史伪像的问题。我们专注于平面运动对磁化历史的影响。对象位置的变化将破坏组织的稳态磁化强度。中断将传播到下一个采集的卷,直到达到新的稳定状态。在本文中,我们介绍了自旋历史效果的模拟,实验数据以及用于检测和校正自旋历史伪像的自动两步算法。该算法确定给定切片中所有体素的稳态分布,并指示哪些体素需要自旋历史校正。自旋历史校正应在标准重新对齐过程之前进行。为了获得实验数据,设计了特殊的体模和MRI兼容的运动系统。对于在1.5-T MRI扫描仪中使用该体模获得的数据,提出了运动对自旋历史的影响。我们表明,提出的算法能够检测位移的发生,并确定哪些体素需要自旋历史校正。幻像研究的结果与仿真结果吻合良好。

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