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正性或负性信号波动?相位编码方案对EPI中敏感性诱导信号丢失的影响

Positive or negative blips? The effect of phase encoding scheme on susceptibility-induced signal losses in EPI.

作者信息

De Panfilis Claudia, Schwarzbauer Christian

机构信息

Wolfson Brain Imaging Centre, University of Cambridge, Addenbrooke's Hospital, BOX 65 Cambridge, CB2 2QQ, UK.

出版信息

Neuroimage. 2005 Mar;25(1):112-21. doi: 10.1016/j.neuroimage.2004.11.014. Epub 2005 Jan 18.

Abstract

The observation of blood oxygenation level-dependent (BOLD) effect in functional magnetic resonance imaging (fMRI) studies is often hampered by the presence of magnetic field inhomogeneities. These are caused by abrupt changes in the magnetic susceptibility that typically occur near air/tissue interfaces and may result in substantial image distortions and signal losses. In this article, we investigate the effect of susceptibility-induced magnetic field inhomogeneities on the signal intensity (I) and the BOLD sensitivity (BS) for two different phase encoding schemes in blipped echo-planar imaging (EPI), which use either positive (EPIpos) or negative (EPIneg) phase gradient blips for stepping through k-space. Based on magnetic field maps, we generate computer simulations of I and BS for both phase encoding schemes and demonstrate good agreement with the experimental image intensities. We show that regions compromised by susceptibility effects are affected very differently by EPIpos and EPIneg. Further simulations are performed in two representative regions of interest (orbitofrontal cortex and lower temporal lobe) to investigate the dependence of I and BS on the slice angle (alpha), the magnitude of a moderate compensation gradient applied in the slice direction (GScomp), and the phase encoding scheme. We find that I and BS can be considerably increased if the appropriate phase encoding scheme is applied in addition to optimizing alpha and GScomp. Our results suggest that this optimization method would be useful in future fMRI studies to improve the sensitivity in regions compromised by susceptibility effects.

摘要

在功能磁共振成像(fMRI)研究中,对血氧水平依赖(BOLD)效应的观察常常受到磁场不均匀性的阻碍。这些不均匀性是由磁敏感性的突然变化引起的,这种变化通常发生在空气/组织界面附近,可能会导致严重的图像失真和信号损失。在本文中,我们研究了在快速成像平面回波成像(EPI)中,两种不同相位编码方案下,由敏感性引起的磁场不均匀性对信号强度(I)和BOLD敏感性(BS)的影响,这两种方案分别使用正(EPIpos)或负(EPIneg)相位梯度脉冲来遍历k空间。基于磁场图,我们对两种相位编码方案的I和BS进行了计算机模拟,并证明与实验图像强度具有良好的一致性。我们表明,受敏感性影响的区域在EPIpos和EPIneg下受到的影响差异很大。在两个代表性的感兴趣区域(眶额皮质和颞叶下部)进行了进一步的模拟,以研究I和BS对切片角度(α)、在切片方向上应用的适度补偿梯度的大小(GScomp)以及相位编码方案的依赖性。我们发现,如果除了优化α和GScomp之外,还应用适当的相位编码方案,则I和BS可以显著提高。我们的结果表明,这种优化方法在未来的fMRI研究中对于提高受敏感性影响区域的敏感性将是有用的。

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